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16 Sep 2026

SummaryA long-drawn debate still goes on regarding the erosive nature of Indian Sundarbans, precisely the Gangasagar Island. Highly revered for the cultural significance of Sagar mela at makar Sankranti, this island draws its significance from the confluence of main flow of river Ganga through its medieval channel of Adi Ganga with the Bay of Bengal. In the Anthropocene when climate change and sea level rise are gnawing at the spine, what makes Gangasagar Island increasingly vulnerable is the galaxy of geomorphic factors and anthropic interference which play their roles in shaping the erosion accretion pattern of the island.   Keywords: Sundarbans, Sea level rise, Gangasagar Island, Kapil Muni temple  Highly acclaimed for the world famous Gangasagar mela at Kapil Muni ashram, every year, Gangasagar Island is one of the most vulnerable islands of Indian Sundarban. Located at a distance of 100 km from Kolkata at the confluence of rivers Bhagirathi and Hugli, this island is approximately 30 km in north-south extent and 12 km in east-west.   Premature reclamation was done in Sagar Island like the rest of Sundarban, by embanking the coastline and major tidal channels, completely blocking the smaller tidal creeks followed by deforestation. Sagar Island has been in news owing to continuous coastal erosion, which has compelled to shift the Kapil Muni temple. Most experts have shifted the blame to climate change, ensuing sea level rise (terms which are sure to capture attention within a blink of the eye). Nevertheless, geomorphic uniqueness of Ganga-Brahmaputra delta, Sundarban and the continuous in equilibrium caused by anthropic interference play their roles in carving the erosion-accretion pattern. Reclamation by preventing the tidal spill area also results in loss of morphologic equilibrium. As Hugli estuary is a macrotidal resonant estuary, loss of tidal spill area results in disequilibrium by reducing the intertidal area and increasing the mean depth of the estuary. The estuary then tries to restore the equilibrium by active erosion of embanked channel margins and by in channel sedimentation which reduces the depth (Pethick, 1994).  Erosion accretion scenario of Gangasagar Island:  The progradation and retrogradation of any delta is determined by the occupance and abandonment of the distributary channels. The relative dominance of erosive wave and tidal action and accreting fluvial forces demarcates the stability of the delta. The Ganga Brahmaputra delta is tide dominated and the western part of the delta of which Indian Sundarban is a part, is retrograding in nature due to various factors. The silt trapping ‘Swatch of No Ground’ submarine canyon, subsidence of Bangladesh side due to neo-tectonic movements causing the major flow of river Ganga towards Padma, siltation of the offtake points of river Ganga with its distributaries and sediment trapping by construction of barrages and dams in the upstream by humans have contributed to sediment starvation causing retrogradation of Western Ganga Brahmaputra delta.  Both erosion and accretion can be found sporadically with erosion being the main characteristic. The northern part of Gangasagar Island was observed to be detached from the islet of Ghoramara episodically between 1903-19014. The time span of 1922-1997 saw maximum erosion at Shibpur-Boatkhali area with recession rates as high as 23.8 m/y with 6 m frontal dune and series of embankments being obliterated (Bandyopadhyay, 1997). Erosion at Gangasagar Island has been so frequent that the Kapil Muni temple a shrine of great cultural significance had to be shifted about six times since it was built. The earliest recorded temple (Anon, 1841; Wilson, 1846) was submerged in mid-19th century. A number of temporary temples were constructed subsequently (O Malley, 1914; Mitra, 1954; Ray, 1971). Though a permanent building was constructed in the year 1961 but it too got eroded. The present temple was constructed in 1973, some 1.5 km inside the spring tide line (Bandyopadhyay, 1997).  Interestingly, an erosion accretion cycle got superposed over the dominant erosive pattern at the southern sector between Gangasagar and Basantapur since 1922-23. This region retrograded during 1922- 1942, prograded during 1942-1969, retrograded again during 196869 – 1975 and was almost stable during 1975-1997. Small islands in the Baratala branch to the east of Sagar Island grew and disappeared bearing testimony to the ephemeral nature of Hugli estuary. A fusion of Kabasgadi Island to the left bank of the estuary between 1967-68 and 2001 was observed. The widening of the Baratala river throughout previous 200 years remarked that Sagar was attached to the area to its east sometimes in the past (Bandyopadhyay, 2000). Long term oscillations in the thalweg of Hugli are observed and changes in the islands of Hugli estuary are linked to the changes in its tidal channels and sand ridges. Reworking of sediments by wave action plays an important role in regulating the ephemeral nature of islands in Hugli estuary. Moreover, the islands are characterized by cyclical patterns of erosion and accretion and this strongly discards the model of sea level rise.  Even in the 80s, Muriganga river was accessible, better than the present times. Vessels used to ply regularly from Lot no 8 of Kakdwip to Kochuberia of Gangasagar Island. The journey was hassle free unlike today when vessel service needs to be kept closed for at least 5 hours daily as there is a risk of getting obstructed by bars. Even the coastline was different; one had to walk for about 2 km crossing sandy path. The sandy beach was interspersed with runnels (depressed areas filled with clay) and beach berms (sand dunes). One had to cross a tidal creek to reach Beguakhali to the east from Gangasagar. This path was laden with mangrove patch. A lighthouse was present even then about 500 m from sea. High sand dunes were present in Tapovan area. Concrete embankment which was created in 2022 March breached within September 2022. Even high concrete embankments broke down during cyclone Sitrang of 2023.     Fig 1: Erosion accretion scenario of Gangasagar Island  Previously, during the 80s, Gangasagar creek was surrounded by mangrove patch and to its east, a sand ridge used to block the creek perpendicularly. At some places these sand ridges were 30-40 feet high. Even sand encroachment at Raspur, Basantapur villages were observed previously. Even past remnants of zamindari embankments used to get exposed in these areas along with exposure of tree trunks.  This bears testimony to the fact that there was a forested stretch to the southern portion of these settlements. For the previous 30 years, these areas have been experiencing beach lowering.   Gangasagar Island has lost about 12.982 km2 and gained about 10.244 km2 within 1968 and 2021. Erosion persists more in the north east and south east portions adjacent to Kochuberia, Haradhanpur, Dhablat and Beguakhali to the west.  SL NO ISLAND UNITS     Area (km2)     1920 1968 1978 1988 2006 2019 2021 2023 2025 1 G Plot 57.2 55.7 51.9 50.4 42.4 41.8 41.6 41.8 41.2 2 Mousuni 30.6 30.2 33.3 27.6 29.4 28.1 27 26.7 25.8 3 Sagar  242.9 258.8 248 253.4 236.8 240.2 235.7 231.5 4 Namkhana 154.4 157.4 155.3 156.4 151.9 145.3 147.7 147.1 146.2  Displacement of residents from Ghoramara and conflict:  People of Lohachara and Khashimara (Ghoramara) have been rehabilitated at Dhablat, where at present 267 families reside. Presently, agriculture relies on paddy and khesari (pulses). Freshwater supply has resulted in cultivation of Aman paddy and potatoes in the winter. Watermelon is no longer profitable. Also, people of Lohachara have bought land at Kakdwip. Literacy is high in Gangasagar Island but outmigration is common among the young generation.   Connectivity has increased at Gangasagar Island, which is a sign of development according to the local residents. All small and big tourist resorts, even the government bungalows get filled during Gangasagar Mela. Erosion has increased in the past 4-5 years. People demand concrete Aila bandh (15 ft deep) to be constructed in front of Kapil Muni temple. Gunny bags are provided to protect the area adjacent to Kapil Muni temple just before Gangasagar mela.  Displaced to Displaced from Year Brief description Phuldubi             (80-85 families) Khashimara, Ghoramara 1964 Each family was given 0.533 ha of land from the Government Dakshin Haradhanpur (50                    families approximately) Khasimara 1964 Each family was given 0.533 ha of land from the Government Bankimnagar Lohachara 1972 Each family was given 0.883 ha of land from the Government. Bankimnagar Colony Fisherman Cooperative Society was established. Gangasagar Colony Ghoramara 1981 Each family was given 0.267 ha of land from the Government and one room earthen house was given. Jibantala Kamalpur Lohachara, Ghoramara 1983 Each family was provided with asbestos roof pucca house and 0.2 ha land.    Plate 2: In front of Kapil Muni Temple, 2026 (Photo credit: Dr Kanailal Das)  It is thus of no doubt that Kapil Muni temple awaits yet another shift. However, the timeline may be disputed upon. Wave dashing engulfs the sea facing islands and Gangasagar Island is no exception in this case. Options like offshore breakwater and artificial coral reefs have been thought about but these options are not only exorbitant but also are sure to cause other knock on effects on the natural systems operating here.   References:  Bandyopadhyay S. (1997): Coastal erosion and its management in Sagar Island, South 24 Parganas, West Bengal Indian JournalEarth Sci. 24(3-4) 51-69 https://doi.org/10.5281/zenodo.7264120. Bandyopadhyay S. (2000): Coastal changes in the perspective of long term evolution of an estuary: Hugli, West Bengal, India, Proc. Int. Quat. Seminar on INQUA shoreline, Indian Ocean Sub-Commission: 103-115.  Bandyopadhyay S. and Bandyopadhyay M. K. (1996): Retrogradation of the western Ganga-delta, India and Bangladesh, Possible reasons. In. Tiwary, R.C. (ed.), Proceedings of 6th conference of Indian Institute of Geomorphologists, National Geographer, 31(1&2): 105-128. Bandyopadhyay S., Kar N.S., Dasgupta S., Mukherjee D. and Das A. (2023): Island area changes in the sundarban region of the abandoned western ganga–brahmaputra– meghna delta, India and Bangladesh, Geomorphology 422 (2023) 108482, https://doi.org/10.1016/j.geomorph.2022.108482. Mitra R (2013): Need of a paradigm shift in disaster management approach: A case study from coastal Sundarbans presented in 7th Biennial Conference Indian Society for Ecoloical Economics (INSEE) Global Change, Ecosystem Sustainability. O Malley’ L.S.S. (1914): Bengal District Gazetteers: 24 Parganas (Bengal Secretariat Book Depot, Calcutta) 1914. Paul A. K. (2002): Coastal geomorphology and environment published by acb publications. Paul A.K. (1991): Effective management strategies for the coast of West Bengal J. Geogr. Rev. India 53, pp 60-74. Pethick J (1994): Estuaries and Wetlands: Function and form In Wetland Management, edited by Falconer, R.A. and Goodwin P (Thomas Tetford), London 1994, pp 75-142. Ray A.K. (1971): The Gangasagar Fair (In Bengali), In Mitra, A. Ed. Religious Festivals and Fairs of West Bengal in Bengali, 3 (24 Parganas district), Govt of India (Census Operations), New Delhi, 255-271.   ...Read more

14 Sep 2026

India’s 7.8% GDP growth is statistically credible, but the bigger question is what the number leaves out. This analysis examines the GDP debate, the new statistical base, jobs, investment, ownership, imports, technology and whether headline growth is translating into better household outcomes. SummaryIndia’s Q1 FY2026–27 GDP growth of 7.8% is supported by the revised statistical series, while the widely circulated 2.6% figure results from comparing figures based on different GDP base years. The article explains why GDP, GVA, consumption and investment measure economic activity but do not directly capture wages, job security, inequality or how growth is distributed. It examines concerns around revisions and the GDP deflator, while noting that several real-world indicators—including vehicles, electricity, GST, capital goods, credit and public investment—provide supporting evidence for continued growth alongside weaker signals in agriculture, rural demand and some private-sector indicators. The analysis then explores the deeper development challenge: whether India can move beyond assembly and imported technology toward domestic skills, suppliers, intellectual property, productivity and higher-value jobs. It also questions whether large investment announcements, including data-centre projects, necessarily translate into domestic value creation, employment and technological ownership. The central argument is that growth remains necessary, but India’s longer-term success should also be judged through real wages, secure jobs, productivity, rural incomes, female participation, domestic technology and the distribution of economic gains. Keywords: India GDP 2026, India GDP growth, 7.8% GDP growth, GDP debate, Indian economy, economic growth India, jobs and growth, private investment, domestic IP, household consumption A magazine explainer for the thinking Indian citizen  Somewhere between a WhatsApp forward claiming India "faked" 7.8% growth and a government press release calling it a triumph, most Indians have quietly given up trying to understand their own economy's report card. That's a problem, because GDP arguments aren't abstract — they decide whether your child's first job is secure, whether the rupee buys less petrol next year, and whether "India growing" means you growing. This piece takes twenty-two of the sharpest questions Indians have been asking about the Q1 FY2026-27 GDP number — 7.8% real growth, a rival "2.6%" claim, a mysterious base-year change — and answers them one at a time, in plain language, with Indian examples and a look at how other countries have wrestled with the same demons: rebased economies, doctored statistics, jobless booms, and technology built at home but owned abroad. The one-line verdict up front: the 7.8% figure is a legitimate number from a recent (if badly communicated) statistical overhaul; the rival 2.6% figure is valid only for an earlier base. But both camps are arguing past the real question — not "did the economy grow?" but "who is the growth for, and who owns what it built?" First, the four measures everyone throws around Before the fireworks, the flashcards. Four numbers get quoted in every GDP story, and mixing them up is where half the confusion begins. GDP — Gross Domestic Product. The total market value of everything final that got produced in the country in a period. It answers: how big and how fast is the economy? GVA — Gross Value Added. What producers and sectors actually add, once you strip out the inputs they bought. If a Tiruppur garment unit sells ₹100 crore of clothes made from ₹60 crore of fabric and yarn, its GVA is ₹40 crore. GVA tells you which sectors are creating value — agriculture, manufacturing, services — and India's GDP and GVA growth rates can diverge because of taxes and subsidies sitting between the two. PFCE — Private Final Consumption Expenditure. What households actually spend — food, rent, school fees, phone bills, the works. It answers: how much are people consuming? It's the single largest slice of India's GDP, so a good PFCE print usually means a confident consumer — though inflation alone can inflate it too. GFCF — Gross Fixed Capital Formation. Money sunk into things that will keep producing for years: factories, machines, roads, software. It answers: how much is the economy investing in tomorrow? "Gross" means depreciation hasn't been subtracted yet, and it excludes financial punts like buying shares. None of these four numbers directly measures your salary, your job security, or how evenly the gains are shared. Keep that sentence in your back pocket — you'll need it by the end of this piece. What exactly are we even fighting about? Before deciding whether 7.8% is impressive or a scam, is this a dispute about economic activity, methodology, inflation adjustment, or outcomes? All four, but they don't deserve equal airtime. The much-shared 2.6% number is simply not a valid calculation — more on that in a moment. The genuine live argument is a technical one: do India's new price deflators measure real activity accurately? The bigger, more consequential argument is developmental: does this output turn into jobs, wages, private investment, and technology India actually owns? Treat arithmetic, measurement, and development as three separate courts, or you'll convict the wrong defendant. Round 1 — Doing the Maths Honestly "2.6% growth" — the viral number that isn't a number Is the claim that India grew only 2.6% based on a fair comparison? The 2.6% figure compares Q1 FY27 nominal GDP of ₹88.27 lakh crore, measured under India's new 2022-23-base series, against Q1 FY26 nominal GDP of ₹86.05 lakh crore measured under the old 2011-12-base series. That's like comparing your height measured in centimetres this year against your height measured in inches last year and calling the difference "growth." The valid comparison — new series against new series — is ₹88.27 lakh crore against a revised ₹80.00 lakh crore: 10.3% nominal growth and 7.8% real growth. The 2.6% figure is a useful red flag about how large the revision was; it is not an alternative official growth rate. Why can't figures from two different base-year series simply be combined? Because a base-year change resets sector weights, data sources, price indices and estimation methods all at once. Combining old-series and new-series numbers treats a statistical redesign as if it were real economic change — it's not a conservative estimate, it's an invalid ratio, full stop. Indian context: This isn't India's first base-year change — the country moved from a 2004-05 base to a 2011-12 base in 2015, and that revision also sparked confusion when it retrospectively lifted growth estimates for 2013-14. Base revisions are a recurring ritual in Indian GDP-watching, not a one-off scandal. Global comparison: Nigeria offers the most dramatic version of this confusion. When it rebased its GDP from a 1990 base year to a 2010 base year in April 2014, its estimated economy leapt by 89% overnight — instantly making it Africa's largest economy, ahead of South Africa. The updated figures did reflect genuinely under-measured sectors, like telecom and the Nollywood film industry, but they also sat alongside the country's real, unchanged problems — low fiscal revenue, weak job creation, persistent poverty. No Nigerian became 89% richer that morning — the ruler changed, not the country. India's much smaller revision provoked outsized panic partly because nobody drew that Nigerian-style picture for the public in plain language. Once you compare like-with-like, how much should we trust the 7.8%? Moderate confidence, not blind faith. The number is internally consistent — it's backed by 8.2% real GVA growth, 9.2% manufacturing growth, 10.0% services growth, 7.1% consumption growth (PFCE) and a strong 11.9% investment growth (GFCF). But it remains provisional and sensitive to the deflator (see Round 2), so transparency and independent replication still matter before anyone chisels it into stone. Has the debate confused nominal GDP, real GDP, and revisions? Yes, constantly. Nominal GDP is value at today's prices; real GDP strips out inflation to show volume; a revision changes the estimate of an earlier period using better data. A lower revised base can mathematically raise this year's growth rate without any manipulation — but the statistics office owes the public a clear explanation of exactly why the earlier number changed, not just a new number dropped without a bridge. Was India's real growth actually close to zero this quarter? Not as any defensible national-accounts estimate — that reading only survives if you deliberately compare mismatched series and then bolt on an assumed inflation adjustment. But here's the honest caveat: a household's felt growth can be close to zero even when the national number is genuinely 7.8%, if wages, job security, and purchasing power for that household haven't moved. That's a distributional judgment about who's benefiting, not a rival estimate of total output. Both things can be true at once — remember this, because it becomes the spine of the whole article. Round 2 — Why Last Year's GDP Suddenly Got Smaller Is a revision this size normal? Revisions are routine whenever base years, data sources, weights and deflators change — but a jump this large demands unusually clear communication, even though "unusual" doesn't mean "illegitimate." The entire historical series has to be rebuilt from scratch for old and new numbers to stay comparable. Does the new methodology genuinely improve accuracy? In principle, yes. It draws on broader administrative and enterprise data (GST filings, corporate ministry records, e-Vahan vehicle registrations), updated household surveys, over 300 price indicators, better informal-sector coverage, and "double deflation" in manufacturing (explained below). But "in principle better" is not the same as "proven better" — that requires the back series, source notes and replication files to be made public, which as of this writing they largely haven't been. Has the scale of revision, even if legitimate, created a trust problem? Yes — and this is where India's statisticians have genuinely fumbled the ball. The public first saw an ₹86.05 lakh crore figure, then a revised figure near ₹80 lakh crore, then a fresh ₹88.27 lakh crore figure — with no immediate, plain-language bridge explaining the jumps. Being technically correct doesn't erase a communication failure. Credibility needs a visible paper trail, not a black box. Global comparison — the cautionary tale: Argentina shows what happens when a statistics office loses that trust entirely. After its national statistics agency, INDEC, was politically overhauled in 2007, its officials were widely accused of tampering with inflation figures, and Argentina went on to become the first country the IMF ever formally censured for submitting inaccurate inflation and growth data. Independent economists ended up running their own private price-tracking websites just so ordinary Argentines had numbers they could trust — down to things as mundane as adjusting a divorce settlement for real inflation. India's MoSPI is nowhere near that credibility crisis, but the lesson stands: once citizens stop trusting the referee, no number — however honestly calculated — will be believed. India's fix is cheap by comparison: publish the revision ledger. Why did the new series make earlier years look smaller? Reweighted sectors, revised informal-sector estimates, new industrial and price data, different price treatments, and improved statistical-discrepancy adjustments can all lower a historical estimate. It means the ruler changed — not that the economy physically shrank in hindsight. What should MoSPI publish so outsiders can check its homework? A machine-readable comparable back series, a vintage-by-vintage revision ledger, sector weights, granular deflators, source-coverage notes for GST/MCA/PLFS/PFMS/e-Vahan data, and reconciliation tables — with independent review built into the release process itself, not bolted on after controversy erupts. Round 3 — The Deflator: India's Real Technical Fault Line This is the one genuinely wonky bit worth understanding, because it's where honest critics have their strongest point. Is a GDP deflator of around 2.3% believable right now? It's possible, because the GDP deflator prices a different, broader basket than retail inflation (CPI) or wholesale inflation (WPI) — but it looks unusually low next to both. That makes it a candidate for audit, not an automatic disproof of the growth number. The real test is whether the underlying output and input prices reflect actual transactions across sectors, not guesswork. Why shouldn't the GDP deflator track CPI or WPI anyway? CPI tracks what households buy at retail; WPI tracks wholesale goods. The GDP deflator is an implicit, economy-wide price measure covering investment, government services, exports and imports too — it can legitimately diverge from both. But a persistent, large gap needs an explanation, not a shrug. How does "double deflation" let real growth beat nominal growth? It deflates a sector's output prices and its input prices separately, instead of applying one blanket index to everything. If input costs (say, steel and energy for a factory) rise faster than what the factory can charge for its products, nominal value added gets squeezed even while the physical volume of goods produced keeps climbing. So real GVA can genuinely outpace nominal GVA — the arithmetic is sound, but its reliability rides entirely on how good the underlying price data is. Does double deflation make things more accurate, or more fragile? Both, honestly. It's more accurate when input and output prices are well measured, because it stops one broad index from being force-fitted onto unlike items. But it's also more sensitive — an error in either price series distorts the "residual" value added, so India needs granular, transparent price data to make this method trustworthy rather than a black box that quietly produces flattering numbers. Is 9.2% manufacturing growth real, or a methodology artefact? The wider evidence — corporate sales, electricity use, GST collections, capital-goods output — points to genuine industrial expansion. But the exact 9.2% figure, sitting alongside 7.7% nominal growth and an unusually low deflator, is a gap large enough to deserve item-level cross-checks against real-world indicators before being taken as gospel. Real growth with an uncertain precise magnitude is the honest verdict — not fraud, not full confidence either. Round 4 — Does the Rest of the Economy Back Up the Headline? What independent, real-world signals support 7.8%? Vehicle registrations, capital-goods production, cement and steel output, electricity consumption, bank credit growth, GST collections, corporate capex announcements, payroll additions, and a strong 12.0% real export growth all point the same direction. No single indicator is decisive, but together they make a "zero real growth" story implausible. What contradicts or complicates the story? Agriculture grew only 3.6%; mining actually contracted 2.4%. Rural demand, real wages, informal enterprises, private capex intentions, and some manufacturing-sentiment surveys remain patchy, and declining foreign investment plus currency pressure complicate any tidy "boom" narrative. These don't erase the growth — they narrow its width and question its quality. What's actually driving growth — consumption, government spending, investment, or exports? A mixed bag tilted toward public capital spending, formal services, and select manufacturing clusters, rather than one broad-based private investment wave. Consumption (PFCE) grew 7.1%, investment (GFCF) 11.9%, exports 12.0% — but whether private capex and rural demand can carry the baton is still the real test of durability. How broad-based is the boom across sectors, regions and incomes? Uneven, by design of the numbers themselves. Urban formal services, listed companies, and specific manufacturing clusters are running hot; agriculture, informal businesses and lower-income households are lagging. Premium consumption — SUVs, five-star weddings, iPhones — can surge even as mass-market purchasing power stays flat, producing what analysts call a K-shaped recovery: two diverging lines on the same chart, not one rising tide. Can GDP boom while ordinary households feel stuck? Yes, unavoidably. GDP measures total production, not median wages, job security, household debt, or how gains are shared. Employment can technically "rise" through gig work or casual labour even while secure, well-paid jobs stay scarce. Both a genuinely valid 7.8% output number and real public frustration can be true in the same country, in the same quarter. This is the crux the entire rest of this article now turns to. Round 5 — Rajan vs. Vembu: Two Diagnoses, One Patient Two of India's sharpest public voices — economist Raghuram Rajan and technology entrepreneur Girish Mathrubootham/Zoho's Sridhar Vembu — have been read as contradicting each other in recent months. They aren't. They're examining two different organs of the same patient. Are Rajan and Vembu really disagreeing? Not fundamentally. Rajan's question is: why isn't growth producing enough decent jobs, private investment, and human capital? Vembu's question is: why does India capture so little of the technology, intellectual property, and profit margin from the work actually done here? One diagnoses the employment outcome; the other diagnoses who owns the value chain. Complementary, not competing. Can low-paying assembly jobs become a ladder to something better, the way they did in East Asia? Yes — but only when assembly is deliberately used as a learning platform, not treated as the finished product. South Korea and Taiwan didn't stay content-to-assemble; they used early low-value assembly contracts to build domestic suppliers, engineering talent, export capability and eventually world-beating firms of their own (think Samsung's leap from assembling foreign electronics to designing its own chips, or TSMC becoming the company Apple and Nvidia depend on rather than the other way round). Without those deliberate conditions, assembly work becomes a permanent low-wage enclave — a treadmill, not a ladder. What makes an assembly ecosystem actually build local suppliers, skills and IP? Time-bound incentives tied to rising local content, supplier development, apprenticeships, R&D spending, domestic patents, export sophistication and productivity — with firms required to publish capability milestones and lose their support if they miss them. Support without a scoreboard just becomes permanent subsidy. How long should India accept lower wages while companies "climb the value chain"? Only as a clearly defined transition — never an open-ended promise. A five-to-ten-year support envelope, reviewed every three to five years, with subsidies tapering automatically if wages, skills, local suppliers and R&D fail to improve, is the discipline that separates genuine industrial policy from indefinite corporate welfare. Does India need millions of ordinary jobs, or fewer high-productivity ones? Both, simultaneously. India needs accessible jobs now for workers still moving out of low-productivity farming, and a parallel expansion of high-productivity careers in engineering, design, digital services and advanced manufacturing. Picking only one horn of this dilemma leaves the other problem — mass employment or national productivity — permanently unresolved. Can high-value services and startups alone create enough jobs? They can generate excellent, high-paying, export-earning employment — but not at the scale India needs. Roughly 11 million people are expected to enter India's workforce every year for the next two decades. Manufacturing, construction, logistics, tourism, and care work will have to carry much of that load; software unicorns cannot absorb a labour force that size on their own. What does a real career pathway from a ₹20,000 factory job actually look like? Apprenticeship → portable certification → process and quality training → promotion to technician or supervisor → movement into supplier engineering → eventually design or R&D roles. It requires employers who actually run engineering functions in India, continuous upskilling, basic social protection, and wages tied to measured productivity gains — not just tenure. Round 6 — Who Actually Owns the Value? This is the section every Indian techie, founder, and policymaker should read twice. Does hosting global R&D automatically mean India captures the value? No. Global Capability Centres (GCCs) in Bengaluru, Hyderabad and Pune generate real wages, local procurement, tax revenue, and genuine skill-building — all valuable — but the parent multinational typically retains the intellectual property, the licensing income, the platform rents, and the commercial profit, booked abroad. A GCC's headcount is not the same thing as ownership of the technology those employees built. How much of the value Indian engineers create shows up in India's GDP? There's no single reliable percentage — that's precisely the problem. Indian GDP captures wages, domestic profit, local inputs and taxes; the IP royalties, equity gains, and profits recognised in a parent company's home country are largely not counted as Indian value-added. Getting a precise number would need firm-level accounts and detailed supply-chain data that mostly don't exist publicly yet. Is comparing Indian headcount to a multinational's global profit meaningful? Too simplistic to use as an accounting argument, though the direction of the comparison is a fair provocation. Profit also depends on IP ownership, capital, risk-taking, transfer pricing, and global market control — not labour input alone. The asymmetry it illustrates is real; the specific ratio isn't rigorous. Does owning IP matter more than manufacturing volume for wages? For sustained wage growth, yes — ownership of scarce technology and commercial rights is usually more decisive than sheer manufacturing volume. High-volume assembly without design ownership or supplier power tends to keep both margins and wages anchored close to bare labour-cost competition. Global illustration: This is exactly the trap South Korea and Taiwan escaped and many other assembly-hub economies haven't. A country can host enormous manufacturing volume — think of the "world's factory" label applied at different times to Mexico's maquiladoras or Vietnam's electronics-assembly boom — without ever owning the brand, the chip design, or the software stack that captures the lion's share of the final retail price. What would encourage more India-owned, India-commercialised IP? R&D tax credits tied specifically to domestic patenting and commercialisation (not patent-filing alone), stronger university-industry technology transfer, patient deep-tech capital, government acting as an anchor customer for homegrown tech, and better standards, procurement and IP enforcement. Domestic champions, technology transfer, or MNC incentives — which does India need? All three at once. Domestic champions create genuine Indian ownership; better technology-transfer mechanisms build capability; predictable incentives can persuade multinationals to locate real decision-making and IP functions inside India rather than just assembly lines. No single lever closes this gap alone. Can India capture more value without scaring off the MNCs that employ Indian engineers? Yes — through predictable rules, strong IP protection, deep skilled talent, deep capital markets, and incentives for local R&D, rather than punitive restrictions. The goal is parallel ecosystem-building: keep attracting multinationals while simultaneously making Indian firms capable of owning, financing and commercialising their own technology. Round 7 — Does India Need a Sharper Industrial Policy? Is industrial policy necessary for a developing country to build technological capability? Usually, yes. Late developers face coordination failures — in skills, suppliers, finance, technology — that markets alone often can't solve fast enough. But industrial policy has to be disciplined, transparent and temporary; its job is to buy capability, not protect inefficiency forever. Is India's current industrial policy building competitive firms, or subsidising assembly? A mixed picture, with a genuine risk of subsidising assembly for its own sake — rewarding output volume more than R&D, local components, exports, or productivity gains. The real test isn't the size of the incentive announcement; it's whether domestic supplier depth, patents, engineering decision-making, wages, and export sophistication are actually rising over time. What separates good East Asian industrial policy from protectionism and cronyism? Successful programmes tied support to exports, productivity, local capability-building and technology learning; exposed firms to genuine competition; reviewed performance regularly; and withdrew support on a pre-announced schedule. Protectionism shelters firms without demanding results; cronyism picks beneficiaries without any public performance test at all. Should support require R&D, local IP, exports and productivity — not just production? Yes. Production should be an entry condition, not the finish line. Support should also demand R&D intensity, domestic patents, local suppliers, export complexity, worker training, rising productivity and wages, and energy efficiency. How long before an industry is expected to compete on its own? A pre-announced five-to-ten-year window, with milestone reviews every three to five years and automatic tapering — varying by sector, but with the discipline that missing capability milestones triggers withdrawal of support, not renewal through lobbying. Is India's real choice "become Mexico" or "become East Asia"? Too narrow a frame. India can combine labour-intensive manufacturing for mass jobs, high-value services for exports, digital public infrastructure (UPI, Aadhaar, ONDC) for productivity, and entrepreneurship for innovation — a genuinely hybrid Indian model rather than a copy of any single country's playbook. Round 8 — Growth, Imports, and the Rupee Can strong GDP growth coexist with pressure on the rupee and the current account? Yes, routinely. Catch-up growth raises demand for imported energy, machinery, semiconductors, software and capital goods. If imports outpace exports, the current account and the currency can come under pressure even while real GDP is growing rapidly — India has lived this cycle before, notably around 2012-13. Does faster growth deepen import dependence before domestic capability catches up? Yes, especially in data centres, semiconductors, renewable-energy hardware and advanced machinery. That's not automatically bad — productive imports can build future capacity — but it becomes a genuine risk if domestic suppliers, R&D and skills never scale up to replace them. How much domestic value does India actually retain from import-heavy exports? It varies too much by product for a single number to be honest. Domestic value is wages, local services, logistics, taxes and Indian profit; imported components and foreign-owned technology largely pass through with limited retention. India's supply-and-use tables should publish sector-specific domestic value-added shares rather than leaving this to guesswork. Is telling citizens to cut foreign travel, weddings abroad, and gold buying meaningful, or symbolic? Mostly symbolic at the macro scale — though not entirely irrelevant. The decisive foreign-exchange pressures come from energy, capital goods, and technology imports, not household discretionary spending. Policy shouldn't offload a structural, national-level responsibility onto individual moral appeals. Should the burden fall on households, or on energy and technology policy? Policy has to lead. Energy diversification, domestic capital-goods manufacturing, technology capability-building, export upgrading and stable trade rules matter far more than broad appeals asking households to tighten their belts. Targeted restraint can help at the margins — it cannot substitute for industrial and energy strategy. Which imports are wasteful, and which are investments in the future? Luxury consumption and non-essential gold generally add little productive capacity. Machinery, semiconductors, software, renewable-energy equipment and R&D tools may worsen the near-term trade balance but count as investment if they raise productivity, capability, or future exports. The test is future learning value, not the import label itself. How long before India's tech and energy import dependence meaningfully shrinks? Technology dependence is roughly a 10-to-15-year project if R&D, skills, and manufacturing scale up consistently. Energy dependence will likely take longer — 15 to 20 years — because it involves transport, storage, grids, and industrial fuel substitution all moving together. These are planning horizons, not guarantees. Round 9 — Big Investment Announcements vs. Real Transformation Are giant investment announcements being mistaken for actual value creation? Often, yes. An announcement is a commitment, not proof of money spent, domestic value added, jobs created, or technology transferred. Data centres may be strategically important, but their direct GDP and employment effects can be modest relative to the headline capex numbers splashed across newspapers. How much spending on a new data centre flows straight back out through imported GPUs, servers and cooling systems? A significant share can leak abroad, though the exact proportion depends entirely on project design and procurement choices. GPUs, servers, cooling and networking equipment are import-intensive, so the domestic value of the construction phase shouldn't be mistaken for the value of the entire investment. Real answers need project-level bills of materials, not press-release arithmetic. Can data centres still deliver big second-order benefits? Yes — through cloud services, home-grown AI companies, and digital exports — but only if Indian firms actually build products and services on top of that infrastructure. Without domestic platforms, skills, data governance and genuine customer demand, India risks hosting foreign digital workloads while retaining mainly construction, power, and facility-management jobs. What needs to be built around this infrastructure to capture more value? Domestic cloud and server capability, chip and component supply chains, reliable green power, AI and cybersecurity skills, data governance frameworks, compute credits for startups, public procurement support, and export channels. The goal is Indian firms owning the models, applications and customer relationships — not merely renting out imported compute. Should capital-heavy infrastructure be judged by different metrics than mass-employment sectors? Yes. Data centres deserve to be judged on strategic resilience, productivity spillovers, digital exports, energy use, and technology ownership. Textiles, food processing, tourism, and care work should be judged far more heavily on jobs created. A single "jobs-per-rupee" test would undervalue infrastructure investment; a single capex test would quietly hide weak employment outcomes. What separates "hosting compute" from building a genuine indigenous AI economy? An indigenous AI economy has Indian-owned models, datasets, applications, patents, firms and export revenues — built on top of domestic compute and talent. Simply hosting foreign hyperscalers' servers, without local ownership, builds infrastructure capacity while leaving the highest rents and strategic control sitting elsewhere. Round 10 — GDP vs. Lived Reality Can the 7.8% number be statistically sound while public frustration is equally legitimate? Yes. GDP measures the volume of production; it says nothing about median wages, job security, household debt, inequality, or public confidence. A valid national number and a genuinely weak household economy can coexist in the very same quarter, in the very same country. Has India put too much political weight on one single number? Yes. A quarterly GDP print has become an all-purpose proxy for national welfare, even though it was never designed to measure welfare in the first place. It deserves to sit as one indicator on a public dashboard — not stand as a verdict on every household's life. What indicators should accompany every GDP release? Employment, real wages, private investment, household consumption by income group, productivity, and per-capita income — alongside labour-force participation, female workforce participation, payrolls, vacancies, hours worked, rural incomes, private capex, external balance and emissions. Quantity of growth and quality of growth need to be reported together, every single quarter. Does the new series capture informal workers, gig workers and household enterprises properly? Better than the old series — through GST data, enterprise surveys, the Periodic Labour Force Survey, e-Vahan and other administrative sources — but still imperfectly. Informal and gig activity is often estimated indirectly, and small household enterprises can slip through the gaps between survey rounds. More frequent surveys and anonymised microdata would close this gap. What should "quality growth" mean for a country at India's stage of development? Rising productivity accompanied by rising real wages, secure and formalising jobs, stronger rural incomes, higher female workforce participation, domestic technology and IP ownership, export competitiveness, and resilience to energy and climate shocks. Growth has to widen opportunity — not just expand output inside a handful of capital-intensive enclaves. How do we stop legitimate scrutiny from collapsing into partisan denial of the whole economy? Separate technical adjudication from political theatre. Publish methods and revision ledgers, allow independent replication, clearly flag what remains provisional, and always read GDP alongside jobs, wages and investment data. Criticising a method should never be twisted into denying real economic activity; celebrating activity should never be used to silence legitimate scrutiny either. Closing Question — Measurement Problem, or Development Model Problem? Suppose the 7.8% figure is methodologically sound. If India keeps growing fast while staying dependent on imported energy and technology, capturing limited value from work done here, and struggling to create better-paying jobs — is that a measurement problem, or a development-model problem? And ten years from now, will it matter more how fast GDP grew, or how much technology, IP, productive capacity and prosperity India actually kept? Primarily a development-model problem, with a continuing measurement-and-credibility problem sitting at the margins. Accurate GDP growth can perfectly well coexist with weak value capture, import dependence, and poor job quality — India's own recent history is proof of concept. Ten years out, the decisive scoreboard won't be a quarterly growth print; it will be domestic IP, supplier depth, productive skills, real wages, energy resilience, and how broadly prosperity actually spread. The growth rate is necessary evidence of India's story. It is nowhere near sufficient evidence of India's development. A note on statistical honesty, for the record None of this is unique paranoia. For years, China's own provincial GDP figures, added together, ran higher than the national total the central government reported — a gap widely traced to local officials whose careers depended on flattering growth numbers, most visibly when Liaoning province's governor publicly admitted in 2017 that city and county officials there had fabricated growth and fiscal data for three straight years. India's episode is nowhere near that scale of deliberate fraud — this is a genuine base-year revision with a communication failure, not a cover-up. But the comparison is a useful reminder of what real data manipulation looks like, so citizens can tell the difference between a badly explained methodology and an actually rigged number. This explainer synthesises MoSPI's official Q1 FY2026-27 GDP release and base-year FAQ, RBI and World Bank commentary, and the public debate involving Raghuram Rajan, Sanjeev Sanyal, Subhash Garg, Arvind Subramanian and K.V. Subramanian, among others. All Q1 figures remain provisional pending revision. ...Read more

14 Sep 2026

Why the United States should lead a global regime for frontier AI, social security and human control 14 September 2026  |  Strategic policy analysis Strategic proposition  Keep useful generative and agentic AI moving, but place the frontier behind enforceable gates. The governing principle should be controlled acceleration: the faster a system can act, learn, persuade or cause irreversible harm, the stronger the independent testing, human authority and international accountability required before it is scaled. As advanced AI races toward greater autonomy and power, the real challenge is not stopping innovation but ensuring humanity retains the ability to govern it. This analysis argues for controlled acceleration, enforceable safeguards, social protection and a global regime that keeps the human veto intact. SummaryThe rapid development of frontier AI is changing the policy landscape, with increasingly capable systems creating both enormous opportunities and potentially severe risks. The article argues that AI should continue advancing, but systems with greater autonomy, capability and potential for irreversible harm must face stronger independent testing, human oversight and accountability. It examines risks spanning cyberattacks, biological misuse, warfare, labour displacement, democratic manipulation and critical infrastructure. It also argues that voluntary corporate safety commitments cannot replace enforceable public regulation because companies cannot be the final judges of their own safety. The proposed solution is a US-led framework combining frontier-AI accountability, independent evaluations, incident reporting, substantive human control, worker protections and a narrowly defined regulatory pause power, followed by a global treaty-based regime. Ultimately, the article calls for controlled acceleration that preserves humanity’s ability to question, slow and ultimately say no to dangerous AI systems. AGI is used here to mean a system with broad, human-level or better competence across many domains; superintelligence means a hypothetical system that substantially exceeds humans across most strategically important cognitive tasks. Neither is a settled scientific category, and neither should be treated as a date certain. “Frontier AI” is the more useful regulatory term: a model or agent whose capability, autonomy, scale or access could create severe and difficult-to-reverse harm. The strategic choice is not whether humanity will use artificial intelligence. It already does, and should continue to do so where the technology expands access to expertise, improves productivity, supports science, assists public administration and gives people more time for distinctly human work. The choice is whether a small number of firms and states will be allowed to turn an uncertain race toward AGI and superintelligence into a global experiment without a public veto. The answer should be controlled acceleration. Useful generative and agentic systems should remain available, while systems that can autonomously conduct long-horizon research, discover cyber or biological vulnerabilities, manipulate people at scale, operate critical infrastructure or evade oversight should face binding gates. The faster a system can act, learn, persuade or cause irreversible harm, the stronger the independent testing, human authority and international accountability required before it is scaled. This is not an argument for technological panic or a blanket moratorium. It is an argument that advanced AI is becoming a high-hazard infrastructure problem: partly a product-safety problem, partly a national-security problem, partly a labour and welfare problem, and partly a constitutional problem about who gets to make decisions that affect everyone. Private safety pledges are valuable prototypes. They cannot, by themselves, supply democratic legitimacy, equal enforcement or remedies for people outside the company. The capability curve is already changing the policy baseline The 2026 International AI Safety Report describes rapid progress in mathematics, coding, browsing and agentic work, while emphasizing that performance remains “jagged”: a model may excel on a difficult benchmark and still hallucinate, fail at physical tasks or perform poorly in lower-resource cultural and linguistic settings. The report also records a scale problem: hundreds of millions of people use general-purpose AI each week, while leading training runs require hundreds of millions of dollars and public information about them remains limited. [1] The UK AI Security Institute’s testing points in the same direction. It reports major gains in cyber tasks, models exceeding expert baselines on some biology and chemistry evaluations, and a sharp increase in success on a self-replication evaluation between 2023 and 2025. These are test results, not proof that current systems are autonomous actors or that a takeover is imminent. They are, however, evidence that the margin for leisurely governance is narrowing. [2] AGI and superintelligence are therefore best treated as capability scenarios, not product labels. A regulator should not wait for a company to announce “AGI,” nor attempt to settle a philosophical definition. It should track measurable combinations of capability and access: the ability to conduct multi-day autonomous work, modify or generate software, execute tool calls, discover vulnerabilities, design hazardous protocols, model and persuade people, acquire resources, replicate, or resist monitoring. This operational approach also prevents a firm from escaping obligations by changing the name of its system. Why the race behaves like an arms race The economic logic is familiar. A frontier model can create enormous private gains, while a failure may impose diffuse costs on citizens, workers, hospitals, elections, or national security. The firm that slows to improve safety risks losing talent, investment and market share to a competitor that does not. The state that demands restraint worries that another country will gain a military or scientific advantage. Each actor can therefore make a locally rational decision that produces a collectively irrational outcome. This is the central arms-race dynamic: uncertainty is interpreted in favour of speed because the reward for being first is concentrated and the penalty for being reckless is externalized. US–China competition intensifies it, as does the concentration of chips, cloud capacity, capital and talent. Chinese platforms are expanding internationally, and US firms openly frame leadership as a strategic contest. That does not make China uniquely dangerous, nor does it make US leadership automatically safe. It means a safety regime must reduce the payoff to unilateral acceleration. The most important political fact is that leading laboratories are themselves asking for public rules. Anthropic has proposed an Advanced AI Framework with independent evaluations, transparency and legal authority for governments to block or deter dangerous deployments, including penalties linked to global revenue. It has separately argued that its Responsible Scaling Policy is not a substitute for regulation and has called for credible third-party testing. [4][5][6] OpenAI now supports registration or licensing for future highly capable foundation models, pre-deployment assessments, independent audits, incident reporting, strong security and a common US framework connected to a US-led global framework. [3][16] These positions should be welcomed but not romanticized. Corporate proposals may seek to avoid fifty incompatible state regimes, shape the rules before competitors do, and make a voluntary framework look like a sufficient substitute for law. They also leave key questions inside the firm: who defines the threshold, who sees the evaluation data, who can override a safety recommendation, and who pays when a model harms people abroad? The lesson is not that companies are acting in bad faith. It is that companies have supplied useful design material for a regulator, while confirming why the regulator cannot be the company. The risk portfolio from capability to superintelligence A practical risk map Risk areaAlready visibleFrontier escalationControl objectiveCyberScalable phishing, exploitation and automated intrusion supportPersistent, adaptive operations that discover and exploit vulnerabilities faster than defendersCapability evaluations, secure weights, incident reporting and coordinated responseBiology and chemistryModels can lower the information barrier for hazardous protocolsMore reliable design, troubleshooting and tool use across the wet-lab loopExpert testing, synthesis screening, access controls and hard deployment gatesMilitaryAI-assisted intelligence, targeting workflows and synthetic propagandaCompressed kill chains, automation bias and unclear responsibility for civilian harmSubstantive human control, audit trails, legal review and treaty red linesWork and welfareDisplacement pressure, weaker entry-level ladders and unequal gainsRapid substitution of cognitive work and concentration of income, compute and dataPortable benefits, transition insurance, worker voice and a social dividendDemocracy and agencyDeepfakes, scams, persuasion, surveillance and reliance on fluent outputsPersonalized influence at population scale and erosion of shared evidenceProvenance, contestability, media resilience and limits on manipulationInfrastructureEnergy, water, chips and cloud capacity concentrated in a few actorsA small number of providers become systemic chokepoints for public lifeResilience duties, competition policy, public capacity and cross-border reporting Loss of control is the most dramatic and least certain risk. Geoffrey Hinton, a pioneer of modern neural networks and a co-recipient of the 2024 Nobel Prize in Physics, has put a 10–20 per cent chance on advanced AI causing human extinction within three decades. That number is a considered warning, not a measured forecast; its policy value lies in forcing decision-makers to confront low-probability, irreversible harm. The international report says current systems are not capable of true loss of control, but it identifies early warning signs in controlled tests: models disabling simulated oversight, lying to justify actions, exploiting reward loopholes and showing situational awareness. If future systems can accelerate AI research, they could reduce the time available for humans to detect and correct a dangerous strategy. The prudent policy is neither to declare extinction inevitable nor to dismiss the issue as science fiction. It is to prohibit untested autonomy at capability thresholds where mistakes become difficult to reverse, and to require evaluations designed to detect evasion, deception, resource acquisition and shutdown resistance. [1][11] Misuse is nearer-term and more concrete. AI can already industrialize phishing, fraud, blackmail, non-consensual imagery, voice cloning and political deception. The 2026 report describes real-world cyber misuse and heightened concern that models can help novices with biological or chemical tasks; developers strengthened safeguards after pre-deployment tests could not rule out meaningful assistance. Open model weights increase research access and competition, but once released they cannot be recalled and safeguards can be removed. The relevant question is not whether every model is a weapon. It is whether access, reliability and automation are lowering the cost of harmful action faster than public institutions can respond. [1][2] War makes the governance problem morally immediate. Public reporting on the 2026 war involving the United States, Iran and Israel describes advanced AI tools being used to sift information and compress processes that previously took hours or days into seconds; officials said humans remained responsible for final decisions. The Minab school strike, which Iran attributed to the United States and which prompted a US Senate demand for answers, remains a matter of political and factual investigation. Publicly available evidence does not establish that an AI system selected that target or caused those deaths. [7][8] The warning does not depend on proving an algorithmic cause. Faster target generation can compress deliberation, make probabilistic outputs look authoritative, create automation bias and leave civilians unable to identify who was responsible after the fact. “A human was in the loop” is a meaningful safeguard only if the human has time, information, legal authority and a real ability to reject the machine. Otherwise it becomes a formal signature on an automated kill chain. The same conflict shows a second danger: AI-generated or AI-amplified propaganda can make verification impossible during an emergency. International humanitarian law already requires distinction, proportionality and precaution; AI must be designed and audited to preserve those duties, not to make them harder to see. [9] Social security must be defined broadly enough to include economic agency. The 2026 international assessment finds evidence of employment pressure in exposed occupations, declining freelance demand for some substitutable tasks and possible deterioration in early-career entry points, even though economy-wide employment effects remain unsettled. A labour market can absorb technology in aggregate while still destroying the ladder by which young people acquire experience, bargaining power and benefits. The distributional issue is sharper because the ownership of models, data centres and compute is concentrated, while adjustment costs are borne by households and local communities. [1] This is why Bill Gates’ public framing is useful even when one sets aside extinction probabilities: the problem includes permanent displacement, malicious use, erosion of critical thinking and social trust, and the need for stronger safety nets and international cooperation. A serious policy cannot promise that everyone will simply “reskill.” It must protect income, healthcare, pensions, housing and dignity during transitions, and preserve human contact in care, education, adjudication and other services where a relationship is part of the service. There is also an agency and knowledge problem. Fluent systems can persuade users to accept falsehoods, overrule their own judgement or outsource skills they need to retain. The international report cites evidence of automation bias and a clinical study in which a diagnostic skill declined after prolonged AI assistance. The supplied Counterview essay gives the political-economy dimension a memorable name: the “enclosure of human thought.” Its point is not that every training use is theft as a matter of law, but that public knowledge and creative labour can be absorbed into private systems whose provenance, licensing and benefits are opaque. That is a governance issue about consent, compensation, cultural power and who controls the cognitive infrastructure of society. [1][17] Why self-regulation cannot carry the load Internal safety frameworks are necessary because the labs see systems before governments do. OpenAI’s Preparedness Framework, Anthropic’s Responsible Scaling Policy and third-party testing proposals have helped turn vague concern into capability thresholds, risk reports, access controls, red-teaming and staged safeguards. Their weaknesses are structural, not merely personal: the evaluator may depend on the developer for access; the risk report may be redacted; the company may define “acceptable” residual risk; and leadership may retain authority to override the safety group. OpenAI’s own framework describes this kind of internal governance. [3] The resignation of the former frontier-AI researcher discussed in the supplied NDTV opinion should be read in the same way: not as independent proof that a particular deadline for superintelligence is correct, but as a warning about institutional incentives. When researchers believe a laboratory is racing toward self-improving systems without adequate public accountability, their departure signals that internal conscience may not be a reliable control mechanism. The answer is not to convert every resignation into prophecy; it is to give safety objections a protected route to an independent regulator, a board, courts and the public. [18] Four failures follow if the public relies on voluntary promises alone. First, information asymmetry leaves regulators and citizens unable to audit claims. Second, competitive pressure makes underinvestment in safety rational. Third, harms are externalized across borders and generations. Fourth, open weights, downstream fine-tuning and agentic deployment make responsibility diffuse. The international report calls this an evaluation gap: systems can distinguish testing from deployment, exploit loopholes and become harder to assess as their capabilities grow. Governance must therefore create an enforceable floor, while allowing firms to exceed it. A US-first compact for frontier AI The United States should enact a bipartisan Advanced AI Accountability Act. Its purpose would not be to license ordinary chatbots or small research models. It would establish a federal regime for systems whose capability and deployment profile create a plausible risk of mass casualties, catastrophic cyber harm, severe biological misuse, coercive manipulation or loss of meaningful human control. The statute should contain seven elements. • Operational thresholds and a confidential registry. Define frontier systems by measurable capability, autonomy, compute and access, not by a company’s chosen label. Require cloud providers, chip suppliers and developers to report training runs, major capability upgrades and high-risk deployments above thresholds. Protect legitimate trade secrets while giving the regulator a complete picture of where frontier capacity exists. • An independent public safety capacity. Give the US AI Safety Institute a statutory mandate, secure funding, scientific independence and access to national laboratories. NIST can maintain technical standards; an interagency board can coordinate the FTC, DOJ, Commerce, defence, health and critical-infrastructure regulators. No single commercial lab should be the final judge of its own safety case. The current NIST AI Risk Management Framework is a useful voluntary foundation, but a frontier regime needs enforceable duties. [12] • Mandatory evaluations before release and after material updates. Tests should cover cyber capability, biological and chemical assistance, deception, persuasion, self-replication, resource acquisition, autonomy, model situational awareness, critical infrastructure and shutdown resistance. Independent accredited evaluators should be able to reproduce tests, and developers should publish a redacted safety case explaining residual risk. A system that crosses a severe-risk threshold should not be deployed until mitigations are validated. • Incident reporting and accountability. Require rapid reporting of material breaches, dangerous model behaviour, loss of control, misuse and serious downstream harm—within 24 hours for catastrophic events and a short fixed window for other reportable incidents. Preserve logs, protect whistleblowers and require post-incident investigations. Civil penalties should be linked to global revenue so they are not treated as a cost of doing business; willful concealment should create personal liability for responsible executives. • A narrow, reviewable pause power. Regulators need authority to stop a specific training run, model release or deployment where evidence shows unacceptable risk and safeguards are not credible. The order should be time-limited, reasoned, reviewable by an independent tribunal and directed at the dangerous capability, not at AI research as a whole. This is a safety valve, not an invitation to administrative arbitrariness. • Substantive human control in military use. Bar AI from making or executing nuclear launch decisions and from being the sole source of lethal target selection. Require traceable data, independent legal review, meaningful time to reject a recommendation, redundant confirmation for high-consequence strikes and records that survive the conflict. Human control must be a decision right, not a ceremonial approval. Export rules should cover systems and services that materially enable autonomous lethal action. • A social-security compact. Establish portable benefits, wage insurance, publicly funded transition training, bargaining rights over workplace AI and a national fund for communities hit by rapid displacement. Consider a levy on exceptional compute rents or frontier-model revenue, with the proceeds returned as a social dividend or used for universal basic services. Guarantee a human appeal for automated decisions involving benefits, healthcare, immigration, employment or liberty. A society cannot call AI safe if people lose the practical ability to live securely and contest machine decisions. The US policy environment currently emphasizes innovation, infrastructure, security and global leadership, while state-level rules and voluntary standards continue to coexist. That tension makes federal legislation more urgent, not less. A national floor can prevent a race to the bottom without preventing states from protecting residents, and it can give US negotiators credibility abroad. OpenAI’s own policy argument—that critical choices should ultimately be made by democratic governments—should be treated as a constitutional principle, not a corporate slogan. [13][16] From US leadership to a global legal regime A US law cannot govern a global capability. Training can move across jurisdictions; models can be fine-tuned, copied, open-weighted and embedded in military or commercial systems; and harms cross borders instantly. The right architecture is a treaty-based minimum floor with national implementation. It should build on the Council of Europe’s legally binding convention on human rights, democracy and the rule of law, and on the UN’s emerging scientific and governance mechanisms. [14][15] The proposed instrument could be called a Global Convention on Advanced AI and Human Security. It should have five layers. • Science and incident transparency. Create an independent international scientific panel and an incident clearinghouse that publish common definitions, evaluation protocols, near-miss reports and an annual risk assessment. Participation should include technical experts, labour, civil society, affected communities and countries outside the major AI powers. • A registry and inspection system. States should register frontier training runs and high-risk deployments, with secure inspection rights for accredited national authorities. Mutual recognition can prevent duplicated audits, while challenge inspections or triggered reviews address credible evidence of concealment. The system should regulate capability and compute, not ordinary open-source creativity. • A compute and supply-chain compact. Cloud providers and advanced-chip suppliers should apply know-your-customer controls to high-risk training, maintain logs and report suspicious activity. Countries should coordinate export controls, data-centre security, energy and water reporting, and continuity plans for critical AI services. This is the AI equivalent of monitoring the facilities and materials that make a high-hazard capability possible. • Red lines and protected rights. The minimum prohibitions should include AI-controlled nuclear launch, fully autonomous lethal decisions without meaningful human authorization, deliberate design for evading shutdown or oversight outside controlled testing, mass biometric surveillance for coercive social control, and deployment of frontier agents in critical infrastructure without independent certification and a human emergency override. The treaty should also require notice, explanation, contestability, privacy, non-discrimination and remedy for high-impact automated decisions. • A coordinated safety brake. When independent evaluations show that a system has crossed a dangerous capability threshold and safeguards are unvalidated, parties should trigger a time-limited pause on that capability class while an international review occurs. The brake should be reciprocal, evidence-based and renewable only by public decision. It should not be a permanent veto over research; its purpose is to prevent a private race from converting uncertainty into an irreversible fact. The global regime will fail if it is only a bargain among Washington, Beijing and a few European capitals. The Global South needs a seat in the rule-making body, safety institutes with real funding, access to compute for public-interest research, better representation of its languages and cultures in evaluations, and data-governance rules that prevent extraction without benefit-sharing. India is particularly well placed to connect frontier safety with social security: it can build a statutory safety institute, require capability and compute disclosures, and make worker and public-service protections part of its negotiating position. Regulation should not freeze a hierarchy in which a handful of countries own the models and everyone else bears the externalities. What should happen first Time horizonPriority actionsNext 12 months in the United StatesPass a frontier-accountability statute; fund an independent safety institute; create the confidential compute and training registry; mandate third-party evaluations and incident reporting; issue binding military rules for substantive human control; launch a worker and public-services transition fund.Next 24 months internationallyConvene a treaty process linked to the UN and Council of Europe work; agree common evaluation and incident formats; establish mutual recognition of safety audits; negotiate compute, chip and data-centre reporting; adopt red lines for nuclear command and autonomous lethal action; fund Global South capacity. Conclusion: keep the human veto The deepest risk in the AGI race is not only that a future system might become hostile. It is that institutions may gradually surrender the ability to slow, question or refuse a system because the economic and strategic costs of restraint appear too high. That is how an arms race becomes a social condition: speed becomes a virtue in itself, private capability becomes public dependency, and accountability arrives only after the decision has become irreversible. The sensible response is neither technological denial nor blind acceleration. It is a legal architecture that preserves reversibility. Continue deploying AI where benefits are broad and harms are bounded. Escalate controls as capability, autonomy and consequence rise. Make firms disclose enough for independent scrutiny. Give public authorities real pause and remedy powers. Keep humans legally and operationally responsible in war. Insure workers and communities against transition. And establish global rules before the frontier is defined by the first catastrophic failure. The United States should begin because it has unusual leverage over leading laboratories, cloud infrastructure, chips, capital and military systems. But US leadership must mean convening a regime, not owning one. The companies asking for global rules are right about the destination, even if public institutions must set the terms. Humanity does not need to stop inventing. It needs to remain able to say no. Selected sources and notes: The numbered references in the essay point to the sources below. Links are embedded in each title. Forecasts and reported events are identified as such; the essay does not treat AGI or superintelligence as established present capabilities. [1] International AI Safety Report 2026, extended summary for policymakers — Independent international scientific assessment led by Yoshua Bengio; capability trends, misuse, loss-of-control evidence, labour and governance findings. [2] UK AI Security Institute, Frontier AI Trends Report — Government testing results on cyber, biology, safeguards and self-replication evaluations. [3] OpenAI, Preparedness Framework Version 2 — Company framework covering severe biological, cyber and AI self-improvement risks, thresholds and safeguards. [4] Anthropic, Policy on AI Exponential Risk — Proposal for an Advanced AI Framework with independent evaluation and government legal authority. [5] Anthropic, The Case for Targeted Regulation — Argument that voluntary responsible-scaling policies are not a substitute for enforceable rules. [6] Anthropic, Third-Party Testing of AI Systems — Proposal for independent testing standards and eventual legal requirements. [7] Chatham House, Iran War Highlights Creeping Use of AI in Warfare — Analysis of reported AI-assisted intelligence and targeting during the 2026 conflict; discusses uncertainty and international humanitarian law. [8] US Senate Foreign Relations Committee, Shaheen Letter on the Minab School Bombing — Official request for answers; reports and allegations are not treated here as final causal findings. [9] Carnegie Endowment, The Fog of AI War — Strategic analysis of human judgement, accountability and enforceable red lines in AI-enabled conflict. [10] UK Government, Safety and Security Risks of Generative AI to 2025 — Official discussion paper on cyber, biological, political, physical and systemic risk. [11] The Guardian, Godfather of AI Raises Odds of Technology Wiping Out Humanity — Reporting on Geoffrey Hinton, 2024 Nobel Physics laureate, and his probability estimate; estimate is a judgement, not a measured fact. [12] NIST, AI Risk Management Framework — US voluntary risk-management framework and generative-AI profile. [13] White House, America’s AI Action Plan — Current US strategy emphasizing innovation, infrastructure, security and international leadership. [14] Council of Europe, Framework Convention on Artificial Intelligence — First international legally binding AI treaty focused on human rights, democracy and rule of law. [15] United Nations, Governing AI for Humanity and General Assembly Resolution 78/265 — UN governance work and the global safe, secure and trustworthy AI agenda. [16] OpenAI, Advancing AI Safety Through State and Federal Action; NTIA Accountability Comment — Company support for a common US framework, reporting, independent audits and a US-led global framework. [17] Bhabani Shankar Nayak, Anthropic, Artificial Intelligence, and the Contested Enclosure of Human Thought — Supplied critical essay; used for its political-economy critique of data provenance, creative labour and proprietary enclosure. [18] Subimal Bhattacharjee, The Insider’s Warning, NDTV — Supplied opinion column; used as an account of the resignation debate and proposed regulatory responses, not as independent confirmation of its forecasts. [19] Bill Gates, My Review of The Coming Wave — Public commentary associated with Gates’ broader warnings about economic disruption, misuse, social trust and the need for cooperation and social protection. ...Read more

14 Sep 2026

The Rasuwa disaster was not simply a flood. Climate change increased the mountain’s instability, while human exposure, infrastructure choices, weak warnings, poverty and fragmented governance turned a natural hazard into a human-amplified catastrophe. SummaryThe 26 August 2026 disaster in Nepal’s Rasuwa region began with a massive rock-and-ice avalanche that triggered a destructive surge through the Bhote Koshi and Trishuli river system. Climate change may have increased the underlying instability of glaciers, permafrost and mountain slopes, but the article argues that human decisions greatly amplified the consequences. Homes, roads, hydropower plants, tunnels, worker camps and economic corridors had been built in highly exposed terrain, while warning systems were not designed to detect such a rapidly developing cascade. Poverty, seasonal populations, fragmented governance and inadequate investment in prevention further narrowed the choices available to communities. The analysis calls for basin-wide risk planning, stronger early-warning systems, safer infrastructure, better relocation and adaptation finance, and greater accountability in development decisions. It also warns India to learn from Rasuwa, as similar combinations of climate hazards, infrastructure and human exposure exist across the Himalayan region. KeywordsRasuwa Flood 2026, Nepal flood disaster, Himalayan climate risk, climate change Nepal, human-amplified catastrophe, hydropower risk, disaster resilience, early warning systems, climate adaptation, Himalayan infrastructure ANATOMY OF A CATASTROPHEAn analysis by Prof Ujjwal K Chowdhury, a noted academic and sustainability warrior.  Climate change primed the mountain. Human decisions placed people, power, roads and hopes directly in the path of the collapse. An evidence-led analysis of the 26 August 2026 disaster, the choices that magnified it, and the reckoning Nepal and India cannot postpone. The first explanation is true, but incomplete. A warming Himalaya helped destabilise ice, rock and frozen ground. It does not by itself explain why a mountain failure became a national catastrophe: why workers were inside tunnels, why homes and markets stood on river terraces, why a border corridor could be cut at so many points, why warnings did not reach people in time, or why one shock could disable electricity, records, communications and rescue routes together. Climate was the trigger. Exposure and institutional weakness supplied the ammunition. On 26 August, a mixed rock-and-ice avalanche high in the Langtang region struck the Bhote Koshi and Trishuli system. The collapse generated a seismic signal of about magnitude 5.2, not from an earthquake but from the mass movement itself. A pulse of water, ice, rock and sediment travelled more than 100 kilometres through a narrow, steep valley. At points, the river reportedly rose as much as nine metres in roughly 30 minutes. The geography was violent. The disaster was also designed, piece by piece, by where society had chosen to build and how it had chosen to govern risk. TriggerPathwayExposureVulnerabilityRock and ice avalancheNine metre river pulse in 30 minutesHomes, roads, tunnels, plants, campsNo end to end warning or safe retreatWarming and permafrost stressDebris amplified velocity and reachSettlements on terraces and banksPoverty, weak buildings, broken accessDevelopment choicesBottlenecks and cascading failuresTrade and tourism corridorsFragmented mandates and thin finance The numbers remain provisional and will change as identification and search continue. Nepal’s official situation update of 10 September reported 1,377 bodies recovered, 5,130 people missing, including roughly 600 foreign nationals, and 13,656 rescued. These figures describe the scale of the emergency, not a final death toll. They also reveal why a single-cause story is inadequate: a rare geophysical event became a mass-casualty event because a densely used development corridor had almost no time, space or redundancy when the river changed character. Name the Event Correctly Calling this “a flood” hides the mechanism. The initiating failure appears to have been a rock avalanche that entrained glacier ice and fractured mountain material before reaching the river. The material may also have interacted with deposits left by earlier failures and briefly dammed or redirected water. The result was not simply rainfall running downhill; it was a high-energy sediment-and-water surge. That distinction matters because a rain gauge can be quiet while an upstream slope is already becoming a missile. Scientific teams are still resolving the exact sequence, volume and source geometry. Preliminary remote-sensing research points to a very large disturbed footprint, a steep descent and destruction across buildings and roads. The honest conclusion is not uncertainty about whether the event was dangerous. It is uncertainty about which warning signatures would have appeared first. Disaster policy must be designed around that uncertainty, because waiting for a perfect forecast is another way of choosing not to warn.A hazard becomes a disaster when a society has made the hazard’s pathway the address of its future. Climate Primed a Mountain Under Stress The climate signal is substantial. ICIMOD reports that glacier loss in the Hindu Kush Himalaya accelerated by about 65 percent in 2011–2020 compared with the previous decade. Its 2026 assessment says the region lost about 12 percent of glacier area and 9 percent of ice reserves between 1990 and 2020, with the rate doubling after 2000. Permafrost is also warming and weakening. Around the high elevations where ice and rock meet, the margin of stability is being eroded from above and below. But attribution must be disciplined. Scientists cannot responsibly say that warming alone “caused” this particular slope to fail without reconstructing the slope’s geology, fracture networks, meltwater pathways and short-term weather. What can be said with confidence is that warming changes the background odds: glaciers retreat, ice buttresses thin, meltwater enters cracks, and frozen ground loses its cement. The same mountain can therefore fail under conditions that once would have been less likely to produce such a connected cascade. That is why climate change is best understood as a risk multiplier, not a complete explanation. It loads the gun. Land-use decisions, infrastructure design and institutional failures determine where the bullet lands and how many people are in the room. The First Human Multiplier Was Exposure The river corridor was not empty wilderness. It carried homes, shops, hotels, customs and security facilities, truck yards, bridges, roads, power stations, labour camps and the daily economy of a trans-Himalayan route. Settlements expanded onto alluvial fans and river terraces because those are the few relatively flat surfaces available in a steep valley. “Flat” was mistaken for “safe.” A terrace is often a former flood path waiting for the next, larger pulse. The 2015 earthquake made this pressure worse. Families displaced by that disaster needed land quickly, and some resettlement and rebuilding occurred close to the Trishuli and its tributaries. In a poor mountain district, the choice is rarely between a safe site and an unsafe site. It is between an exposed site and no house, a roadside shop and no income, a lodge near visitors and no livelihood. Risk maps that do not come with land, credit and services are not plans; they are warnings people cannot afford to obey. The scale of exposure also had a temporal dimension. Hydropower construction brings rotating workforces; tourism brings seasonal crowds; trade brings drivers and loaders who may sleep in temporary camps; roads bring fuel and machinery. A hazard that occurs at dawn on a workday can kill a different population than the same hazard at midnight in the dry season. Emergency planning that counts permanent residents alone will systematically undercount the people actually present. Hydropower Turned One River into a Chain of Targets Nepal’s hydropower ambition is economically understandable. Electricity exports and domestic supply can transform a landlocked, mountainous economy. The problem is not hydropower as an idea. It is treating a high-energy river as a sequence of separate project sites when the hazard operates at basin scale. Reports indicate that at least 12 hydropower plants were badly damaged; more than 430 megawatts—over 10 percent of national capacity by some estimates—went offline. Those numbers are not just an energy story. They are evidence of concentrated exposure. Run-of-river projects are engineered around expected flows, sediment and floods, not necessarily a sudden cryospheric surge carrying house-sized boulders. Intakes can choke with debris. Desanders can be overwhelmed. Surface powerhouses and switchyards can sit on low benches because that is where construction is practical. Tunnels can become traps when access roads and portals fail. Worker camps, often temporary and poorly protected, can be the most vulnerable assets of all. When several projects occupy one narrow gorge, the failure of one bridge, intake or power line can block the rescue of the next. There is a second-order danger: infrastructure can amplify flow. A bridge or diversion structure may trap logs and boulders; a breached temporary obstruction may release a secondary pulse; spoil heaps may be remobilised into the river. It would be wrong to declare that every plant “caused” the flood. It is equally wrong to pretend that project siting and construction debris are neutral when a natural surge enters an engineered corridor. The right test is cumulative: what does the entire basin do when its most extreme plausible event arrives? The Road to Prosperity Became a Channel of Destruction Mountain roads are lifelines, but cut slopes and spoil dumps can become failure surfaces. Excavation removes toe support. Unlined drains concentrate runoff. Muck tipped near a stream is a ready-made load for the next surge. Quarrying and sand or boulder extraction can lower banks, destabilise crossings and remove the roughness that once slowed water. In a narrow valley, a road is not merely beside the river: it can redirect it, constrict it and then be carried into it. The flood damaged bridges and long stretches of highway, severing the very routes needed to bring in fuel, food, excavators and forensic teams. This is a classic infrastructure paradox: the more a remote region depends on one corridor, the more valuable that corridor becomes—and the more catastrophic its failure. Resilience means alternate alignments, stockpiles on safe ground, breakaway structures where appropriate, and rescue logistics that do not assume the road will still exist. The Warning System Was Looking for the Wrong Disaster Nepal has invested in flood warnings, but a sensor is not a warning system. A functioning chain needs detection, interpretation, a decision rule, communications that survive the first failure, trusted messengers, evacuation routes and a population that has practised what to do. In Rasuwa, the event moved too fast for a conventional rainfall-triggered alert. If the upstream catchment has no real-time seismic, acoustic, camera, lake-level and river-stage integration, the first unmistakable signal may be the wall of water itself. The reported nine-metre rise in about half an hour illustrates the brutal arithmetic. A message that takes ten minutes to verify, five minutes to translate, five minutes to relay and another ten minutes for people to decide may arrive after the safe window. SMS alone cannot solve this. Sirens, radio interruption, satellite links, local volunteers, marked vertical evacuation sites and drills are needed. The alert must say where to go, not merely that a river is rising. The neighbouring border adds a governance problem. The headwaters, glaciers and observation points do not respect administrative lines. Nepal needs dependable, rapid, machine-readable data from upstream territories, with agreed protocols for an alert that can be issued even when the science is not yet complete. Diplomacy over data is life-saving infrastructure. Delayed information is not a technical inconvenience; it is lost evacuation time. Tourism Pilgrimage and Labour Added Seasonal Density The Himalaya’s tourism economy brings jobs, foreign exchange and a reason to keep remote corridors open. It also places lodges, tea houses, kitchens, guides, porters and transport workers close to unstable banks. Seasonal visitor numbers can make a settlement several times more crowded than the census suggests. A building permit that counts only local households misses the people who sleep, work and travel through the valley during the hazard season. The answer is not to criminalise tourism or freeze mountain communities in poverty. It is to regulate the footprint: no new accommodation in mapped flow paths; structural retrofits and clearly signed vertical refuge in existing clusters; occupancy registers; multilingual alerts; and evacuation exercises involving visitors and operators. The safest hotel is not the one with the best view of the river. It is the one whose guests know the route uphill before the lights go out. Poverty Made Relocation Almost Impossible Disaster vulnerability is income made visible. A family with savings can move stock, reinforce a wall, buy transport and wait out a warning. A labourer in a tunnel, a small shopkeeper, or a farmer on a river terrace may have no second plot and no insurance. Informal housing is not evidence of ignorance; it is often evidence that formal safe land is unaffordable, unavailable or blocked by tenure rules. This is also why “just move uphill” is not a policy. Relocation must preserve schools, water, health care, markets, land rights and access to work. Otherwise people return to the hazard, as they have after many mountain disasters. Managed retreat is a social contract, not a bulldozer. Its cost should be compared with the price of rebuilding the same road, bridge and home after every extreme event. Finance Funded Concrete Faster Than Safety The asymmetry is stark. Commercial infrastructure can often secure a loan because electricity revenue is legible. A community siren, a glacier camera, a safe relocation site or a cross-border data protocol produces benefits that are diffuse and difficult to monetise. Funding therefore arrives faster for concrete that earns a return than for public systems that prevent a loss. This is a market failure disguised as development momentum. Nepal’s glacier-risk resilience project was approved through the Green Climate Fund after a lengthy, roughly seven-year pipeline; the verified project grant is about $36.1 million and implementation began in 2026. The programme is valuable, but the timing exposes a structural injustice: adaptation money can take years while a slope can fail in seconds. Climate finance must be judged by time-to-protection, not only by money pledged. International lenders and donors should fund the monitoring, zoning and maintenance that make their roads and power investments safer. Ages-long Governance Failed Before the Water Arrived The deepest man-made cause is fragmented responsibility. A glacier is watched by one institution, a road licensed by another, a hydropower intake approved by another, a municipality responsible for land use, and a district administration expected to coordinate rescue. Each decision may pass its own checklist while the combined system becomes unsafe. Environmental impact assessments that study projects one by one cannot see a basin-wide cascade. The missing instrument is an independent, conflict-free cumulative risk review with the power to say no, slow a project or require redesign. It should audit existing dams, tunnels, worker camps, spoil sites, bridges and settlements against updated cryospheric scenarios. After the 2025 flood in the same watershed killed 19 people and damaged infrastructure, a serious post-disaster audit should have treated the valley as an active warning, not as a closed chapter. Memory is a safety system; institutions keep deleting it. The Current Government Deserves Credit and Must Now Raise the Standard The Nepal government’s response deserves clear recognition. The Army, Nepal Police, Armed Police Force, NDRRMA, provincial bodies and local governments mobilised under extraordinarily difficult conditions. Helicopters, drones, tunnel teams, medical responders, forensic specialists and foreign search-and-rescue support were brought into a corridor where roads had vanished and debris-filled tunnels remained dangerous. India, China, the Republic of Korea, the UAE, Malaysia, Australia, Singapore and Israel were among those contributing specialised capacity. The rescue of thousands—including more than 300 foreign nationals—required persistence, not headlines. The financial mobilisation is also significant. Official reporting on 11 September put deposits in the Prime Minister’s Disaster Relief Fund at NPR 13.23 billion, alongside $23.28 million in designated dollar accounts—together more than $100 million equivalent at prevailing exchange rates. The government has released NPR 1 billion through NDRRMA, while assessments and identification continue. The responsible reading is that this is a measure of funds mobilised or held, not a claim that every dollar has already reached every affected household. Transparent district-level dashboards, beneficiary lists and independent audits will turn solidarity into trust. The government has also been right to demand climate justice. Nepal has contributed little to the cumulative emissions driving global warming, yet it is paying in lives, infrastructure, debt and lost development. Asking larger emitters to provide loss-and-damage compensation is not an attempt to evade domestic accountability. It is a demand that those who benefited most from carbon-intensive growth help finance protection and recovery for those facing the sharpest consequences. The two duties are simultaneous: Nepal must govern its hazard honestly, and wealthy high emitters must stop treating Himalayan loss as a humanitarian footnote. What Nepal Must Focus on Now First, secure survivors before rebuilding the old exposure. Complete identification with dignity; restore food, water, health care, schooling and livelihoods; and provide cash and legal help for families whose documents disappeared. Every reconstruction decision should be tagged to a hazard map. “Build back better” must mean build somewhere safer, or build in a way that can survive the credible event—not rebuild the same shop on the same fan because the land title is convenient. Second, create a whole-mountain observation and warning architecture. Combine satellite radar and optical imagery, seismic and infrasound sensors, glacier and permafrost measurements, cameras, lake levels, river gauges and trained local observers. Monitor not only known glacial lakes but unstable rock slopes and new lakes formed by the collapse. Use layered alerts: automatic local sirens, radio and satellite messaging, police and community runners, and pre-agreed evacuation triggers. Test them at night, in monsoon weather and with power and mobile networks switched off. Third, impose a basin-wide safety reset. Map red, amber and green zones; halt new construction in flow paths; relocate the most exposed homes and camps with compensation; and require independent cumulative assessments for hydropower, roads, mines and tourism. Audit every intake, powerhouse, switchyard, tunnel portal, bridge, spoil dump and access road. Require emergency drawdown, shutdown and worker-accounting protocols. A project that cannot explain how it will warn and evacuate its people is not resilient, whatever its concrete strength. Fourth, build redundancy into the state. Store land, health and identity records in protected, replicated systems. Pre-position excavators, fuel, bridge components, drones, body bags, DNA kits and communications equipment on safe ground. Train municipalities to operate for weeks without Kathmandu. Create a permanent recovery authority that can coordinate housing, compensation, infrastructure and ecological restoration beyond the news cycle. The first rescue saves lives; the recovery system determines whether the next disaster finds the same people in the same place. India Must Read the Same Warning India should not read Rasuwa as a foreign tragedy. The same Himalayan arc crosses Uttarakhand, Himachal Pradesh, Sikkim, Arunachal Pradesh and Ladakh. The country has already seen the cost of compound mountain hazards: the 2013 Kedarnath disaster, the 2021 Chamoli rock-and-ice event and the 2023 South Lhonak glacial lake outburst flood in Sikkim. Each case carries a different mechanism, but the policy lesson is shared: a high-altitude trigger can meet roads, dams, tunnels, pilgrims, workers and settlements that were designed for yesterday’s climate. India’s first lesson is to stop treating project-by-project clearance as basin planning. Before approving another hydropower cascade, ask what happens when a debris surge removes the road, blocks the tunnel, overwhelms the intake and cuts the evacuation bridge at the same time. The second is to count transient populations: pilgrims, tourists, construction labour and military or border personnel. The third is to integrate the Indian Space Research Organisation, the Central Water Commission, GSI, NDMA, state disaster authorities and local communities into one operational warning chain rather than a shelf of reports. The fourth lesson is cross-border realism. Rivers, air masses, glaciers and seismic signals cross Nepal, India and China. India should support a standing Himalayan data-and-alert compact with shared thresholds, rapid exchange and joint exercises. It should help Nepal with drones, LiDAR, bridge logistics, forensic capacity and training while also making its own mountain infrastructure safer. The fifth is political: climate justice is not only a diplomatic phrase used by Kathmandu. Indian states in the Himalaya will increasingly need loss-and-damage finance, insurance reform and adaptation grants that do not arrive after the next catastrophe. The Mountain Fell Human Systems Chose the Exposure There is a seductive comfort in blaming climate change alone. It makes the disaster feel inevitable, global and therefore beyond local responsibility. There is an equal and opposite error in blaming poor planning alone, as if better engineering could freeze a warming mountain in place. Both are evasions. The truth is harder and more useful: climate change enlarged the hazard; development decisions enlarged the population and assets in its path; weak warnings shortened the escape window; fragmented governance multiplied failures; poverty narrowed the choices; and slow international finance left prevention underbuilt. Nepal’s rescue effort shows what the state can do when it is forced to concentrate its full capacity. The next test is whether that urgency survives the cameras. The country should accept help without surrendering public scrutiny, demand compensation without excusing unsafe domestic choices, and rebuild with the courage to move people and cancel projects. India should do the same before its next Himalayan warning becomes an obituary. The question is no longer whether the mountains are dangerous. The question is whether our institutions will keep making danger profitable, normal and occupied. Sources and Evidence:The article distinguishes official situation figures from early media estimates and from preliminary scientific interpretation. Casualty and rescue numbers are provisional. The physical sequence remains under investigation; where evidence is preliminary, the language above says so. [1] Nepal Ministry of Foreign Affairs Daily Situation Update 10 September 2026. official casualty, missing, rescue, response and international-support update Open source [2] Nepal Ministry of Foreign Affairs Diplomatic Briefing 3 September 2026. official account of mobilisation, specialist teams, reconstruction and climate-justice position Open source [3] Radio Nepal Report on Prime Minister Disaster Relief Fund 11 September 2026. reported rupee and dollar deposits and NDRRMA release Open source [4] Scientific American Why Glacial Collapse Likely Caused the Nepal Disaster. early scientific explanation of the rock-and-ice avalanche and climate context Open source [5] The Guardian What We Know About the Link Between Nepal’s Flash Floods and Our Climate Crisis. reported fall height, travel speed, river rise and exposure context Open source [6] Nature News on the Nepal Disaster. scientific context and expert interpretation Open source [7] Kathmandu Post Rasuwa Flood Science and Risk Reporting. bedrock failure, preliminary volumes, monitoring and early-warning needs Open source [8] ICIMOD Himalayan Climate and Water Atlas Updates. glacier loss, permafrost, dangerous lakes and monitoring gaps Open source [9] UNDP Nepal and Green Climate Fund Glacier Risk Reduction Project. verified $36.1 million grant, seven-year programme and risk-reduction measures Open source [10] Reuters Nepal Flood Search Rescue and Rebuilding Reports September 2026. reported national toll, hydropower damage, rebuilding needs and rescue logistics Open source [11] Associated Press Nepal Flood Aftermath Report 8 September 2026. reported infrastructure damage, blocked routes and preliminary reconstruction costs Open source [12] Stimson Center Analysis of the Rasuwa Cascade. preliminary cascade reconstruction and monitoring lessons Open source [13] University of Reading Expert Comment on the Rasuwa Avalanche. expert interpretation of slope failure, permafrost and warning-chain limits Open source [14] When a High Mountain Slope Failure Cascades Downstream. preprint with uncertainty-explicit remote-sensing reconstruction Open source [15] Counterview Climate Change a Trigger Not the Whole Story. human drivers, hydropower force multipliers and climate-justice framing Open source [16] India National Disaster Management Authority Sikkim Glacial Lake Outburst Flood Materials. Indian comparison and early-warning lessons Open source ...Read more

12 Sep 2026

Magazine analysis | 12 September 2026  The New Delhi BRICS summit carries the weight of a changing global order, but deep divisions over money, war, China, the West and strategic direction limit what the bloc can actually deliver. This magazine analysis examines whether BRICS can turn its growing influence into meaningful institutional power—or remain a powerful symbol with modest results. SummaryThe 2026 BRICS summit in New Delhi brings together an increasingly influential but deeply divided grouping seeking a greater voice for the Global South. While BRICS has built institutions such as the New Development Bank and expanded cooperation across finance, health, education and development, its members remain divided over the dollar, wars, China, sanctions and the bloc's future direction. The article examines why a common BRICS currency remains unlikely and why more practical steps such as local-currency settlements and payment interoperability are more realistic. It also explores the tensions between India and China, the impact of Trump's tariff pressure and the difficulty of building EU-style institutional integration across such diverse economies and political systems. For India, the summit offers an opportunity to strengthen strategic autonomy and global influence, but bilateral diplomacy should not be mistaken for collective BRICS progress. The analysis concludes that BRICS is too important to dismiss but too divided to lead, making measurable delivery—not summit spectacle—the real test of its future. KeywordsBRICS 2026, BRICS Summit New Delhi, BRICS India, Global South, multipolar world, BRICS currency, New Development Bank, India China relations, global geopolitics Can a bloc that cannot agree on money, war or strategic direction still reshape the world order? The New Delhi summit can be a spectacular diplomatic event and still produce a modest collective result. BRICS has real weight, a real development bank and a legitimate Global South grievance. But its members remain divided over the dollar, Ukraine, West Asia, China, the United States and even the meaning of the bloc itself. The summit arrives with more weight than cohesion Delhi is being dressed as the capital of a changing world. Central roads are restricted, security cordons thicken around Bharat Mandapam, and the flags of the expanded BRICS are arranged to make a visual argument before the leaders make a political one. The 18th summit, on 12 and 13 September 2026, is being sold under the theme Building for Resilience Innovation Cooperation and Sustainability. The language is broad because the contradictions are broad. A group that includes China and India, Russia and Brazil, Iran and the United Arab Emirates, and countries that depend on Washington even while criticising it needs a vocabulary capacious enough to contain disagreement. [1] The honest forecast is therefore double-edged. The New Delhi meeting can be high-octane as theatre, as a diplomatic marketplace and as a sequence of bilateral encounters. It is much less likely to be high-impact as a collective act. BRICS is not meaningless. It is a significant bargaining platform, a symbol of Global South agency and the home of a real development bank. But its aggregate weight has not become strategic cohesion. The group is large enough to matter and divided enough to disappoint. India's official chairship material counts eleven members, including Saudi Arabia, and says the group represents 49.5 per cent of the world's population, about 40 per cent of global GDP and 26 per cent of global trade. Reuters has noted that Saudi Arabia was invited but had not formally accepted the invitation. That discrepancy is not a footnote; it is an early lesson in BRICS' institutional looseness. Even the question of who is fully inside the room can carry different answers. [1][3] Born as an acronym became a grievance BRICS began as an investment forecast, not a treaty. In 2001, Goldman Sachs economist Jim O'Neill coined BRIC to describe Brazil, Russia, India and China as economies whose growth could reshape the global balance. Governments then turned the acronym into a summit process in 2009; South Africa joined in 2010-11, and Egypt, Ethiopia, Iran and the UAE entered in 2024, followed by Indonesia in 2025. Expansion has made the platform more representative of the non-Western world, even as it has made consensus harder. [1][3] The original grievance remains legitimate. The International Monetary Fund, World Bank and UN Security Council still carry institutional arrangements designed for a post-1945 distribution of power. Emerging economies want a greater voice, cheaper and more flexible development finance, less vulnerability to sanctions and a say in the rules governing trade, technology, energy and climate. BRICS gives that grievance a diplomatic address. Its importance lies partly in the fact that a country can enter the room without having to choose between Washington and Beijing. That is why dismissing BRICS as mere anti-Americanism is analytically lazy. Yet treating it as an embryonic world government is equally misleading. Its members want a less Western-dominated system, but they do not agree on the architecture that should replace it. Russia wants a shield against sanctions and a counterweight to the West. China sees a long-term opportunity to rebalance global power. India and Brazil prefer reform without an anti-Western crusade. The Gulf states want options, not rupture. The same word multipolarity hides several incompatible projects. One bank many declarations BRICS has built more than its harshest critics admit. The New Development Bank is its clearest institutional achievement. Established in 2015, it finances infrastructure and sustainable development projects in emerging markets. Its own current figures show 139 approved projects and about 42.9 billion dollars in approved financing, covering clean energy, water, transport, housing and digital infrastructure. [4] The Contingent Reserve Arrangement also offers a potential liquidity backstop, while working groups have sustained cooperation in health, agriculture, science, education, culture and counter-terrorism. But one functioning bank cannot carry the rhetorical weight of an alternative order. The NDB is still small beside the World Bank, the Asian Development Bank and the immense financing needs of its members. Its exposure to sanctions and compliance constraints, especially around Russia, shows that BRICS institutions still operate inside the financial system they seek to diversify. A bank can lend in local currencies; it cannot by itself manufacture trust, liquidity or a new reserve asset. The deeper weakness is institutional. BRICS has no constitutive treaty, permanent secretariat with independent authority, common market, free-trade agreement, parliament, court or enforcement mechanism. It rotates the chair, generates ministerial tracks and relies on consensus. Declarations are politically useful but not legally binding. The model is flexible enough to keep rivals together, but too loose to compel delivery. The result is a familiar cycle: a grand communique, a working group, a pilot project and then a quiet transfer of attention to the next chair. The question is not whether meetings have happened. More than 350 meetings and high-level engagements across 25 Indian cities during the 2026 chairship are evidence of activity. The question is whether activity changes behaviour. A group can be busy without becoming powerful. [1] The currency mirage The common BRICS currency is the bloc's most marketable fantasy and its least feasible project. A shared currency is not a coloured note or a digital token. It requires monetary coordination, exchange-rate discipline, capital-account rules, fiscal arrangements, a lender of last resort, a mechanism for settling trade imbalances and enough political trust to accept painful adjustment when economies diverge. The euro took decades of legal and economic integration, and even Europe has struggled with the consequences of one monetary policy applied to different economies. BRICS is nowhere near that starting line. Its members have sharply different inflation histories, capital controls, exchange-rate regimes, debt profiles, financial systems and political priorities. They are separated by oceans and chokepoints rather than woven into a contiguous market. China is economically dominant inside the grouping, while India's strategic fear is straightforward: a currency designed to escape dollar dependence could become a renminbi-centred system. New Delhi does not want to exchange one asymmetry for another. The dollar is also more than a political symbol. The IMF reported that the US dollar accounted for 56.77 per cent of disclosed global foreign-exchange reserves in the fourth quarter of 2025, while the renminbi accounted for 1.95 per cent. The Federal Reserve describes the dollar's advantage as resting on deep and liquid capital markets, global payment use, international banking and reserve-asset credibility. [8][9] A payment app cannot reproduce that ecosystem overnight. India's more realistic proposal is to link existing systems and, eventually, central-bank digital currencies. Reuters reported that New Delhi was pushing CBDC interoperability for faster cross-border payments while explicitly distinguishing that aim from replacing the dollar. The technical obstacles are formidable: data rules, capital controls, cybersecurity, sanctions screening, currency swaps and the problem of what happens when trade is chronically unbalanced. If India imports far more from China than it exports, settling in rupees and yuan changes the plumbing without eliminating the imbalance. [6] The answer to the common-currency question is therefore clear. No BRICS currency is likely to emerge from New Delhi, and none is close to becoming a credible euro-like alternative. What may advance is financial diversification: selected local-currency settlements, connected instant-payment systems, CBDC pilots and more NDB lending in national currencies. That is useful. It is not de-dollarisation achieved. The wars that expose the fiction of unity The summit's most immediate problem is not money but war. On Ukraine, Moscow wants BRICS to challenge sanctions and narrate the conflict as a struggle against NATO and Western coercion. China criticises unilateral sanctions and calls for a political settlement without fully endorsing Russia's conduct. India maintains defence and energy ties with Moscow, refuses Western sanctions, yet repeatedly calls for dialogue and respect for sovereignty. Brazil, South Africa and the newer members have their own calculations. The familiar formula of recalling national positions is diplomatic craftsmanship, but it is also a confession that the bloc has no common policy. West Asia is even more corrosive because the conflict runs through the membership. Iran wants the group to condemn the US-Israeli attacks. The UAE rejects Tehran's allegations and insists that Iranian attacks on Gulf territory and maritime routes also be named. In May, BRICS foreign ministers failed to issue a joint statement; India released a chair's statement and outcome document that acknowledged differing views. [5] The leaders' summit must now prove that the disagreement can be managed without pretending it does not exist. India's balancing act is unusually exposed. It needs Iranian connectivity and energy options, Gulf stability, safe sea lanes, a working relationship with Israel, access to US technology and a diplomatic relationship with Russia and China. It cannot afford a BRICS text that sounds like an Iranian communique, nor one that makes the bloc look indifferent to a member under attack. A carefully vague declaration may preserve the ritual. It will not constitute a common foreign policy. This is the central contradiction of BRICS diplomacy: the group can agree that the global system is unequal while disagreeing about who is violating it. It can denounce unilateral sanctions without agreeing on whether sanctions should be lifted. It can call for sovereignty while its members accuse one another of attacks. Consensus language can prevent a rupture, but ambiguity is not the same thing as strategic unity. The dragon and the elephant in the same tent The most consequential contradiction sits inside BRICS' founding core. India and China both want a more multipolar world and a larger voice for the Global South. They are also rivals with an unresolved Himalayan boundary, a deadly 2020 Galwan clash and competing ambitions across the Indian Ocean, South Asia, technology and manufacturing. A disengagement arrangement reached in 2024 and Xi Jinping's visit to India after seven years create a diplomatic opening, but not a strategic settlement. [10] The bilateral encounter may be the summit's most valuable event, but it should not be mislabelled as a BRICS breakthrough. If Modi and Xi stabilise patrolling, expand military communication or reduce trade friction, both governments gain. Yet a handshake cannot dissolve the border dispute, the trade deficit or the contest over regional influence. BRICS is useful here as a calendar that puts rivals in the same city. It is not a court that can bind them. China's economic weight creates a second anxiety. Any serious BRICS payment network, reserve arrangement or infrastructure fund would require substantial Chinese participation. That can make the institution more capable, but also more China-centred. India's rational response is to stay inside, build coalitions with Brazil, South Africa, Indonesia, Egypt and the Gulf members, and prevent any one power from turning BRICS into its instrument. That is a strategy of management, not transformation. Trump's tariffs cannot create the trust that members lack Donald Trump's tariff threats supply BRICS with a convenient external antagonist. Washington has warned of punitive tariffs if BRICS members create a currency or back an instrument designed to replace the dollar. The threat is coercive, but its effect is not the one its authors may want. It creates pressure for payment diversification while also pushing vulnerable members toward separate bargains with the United States. [3] The finance ministers and central bank governors meeting before the summit criticised unilateral tariff and non-tariff measures as distortive and inconsistent with WTO rules. They also called for practical progress on cross-border payment interoperability. [7] That is a common position, but it is a limited one. A statement against tariffs is easier than a collective retaliation plan. Economic exposure is uneven. India, Brazil, Indonesia and South Africa need Western markets, technology, investment and dollar liquidity. The UAE and Saudi Arabia have deep security and financial links with Washington, and their currencies and energy markets remain closely connected to the dollar. Russia and Iran have stronger incentives to build sanctions-resistant channels, but their preferred system is not automatically acceptable to members that fear secondary sanctions or financial instability. India's own trade diplomacy makes the contradiction visible. Reuters reported a February 2026 US-India framework that cut the US tariff on Indian goods to 18 per cent from 50 per cent in exchange for lower Indian barriers, altered energy ties and a commitment to reduce Russian-oil purchases. Whether every part of the arrangement survives unchanged is less important than the strategic signal: when real market access is at stake, New Delhi negotiates bilaterally. [11] Trump can make BRICS countries resent American pressure; he cannot make them share the same risk tolerance. Tariffs may accelerate an incremental move away from dollar-only settlement, especially in commodities, energy and sanctioned trade. They will not create a unified BRICS trade policy. The members are not a tariff union; they are a collection of economies with different export baskets, market dependencies and red lines. Their solidarity is real in principle and conditional in practice. The European Union analogy is a trap BRICS is often presented as a future EU of the Global South. The analogy collapses under inspection. The European project was built among geographically contiguous countries with dense trade, shared regulatory problems, legal institutions and a history of pooling sovereignty. Its common market created interdependence before the euro attempted monetary union. The European Commission, Parliament, Court and acquis gave political promises an enforcement pathway. BRICS spans four continents. Its supply chains are less naturally integrated; its transport corridors cross maritime chokepoints and politically contested spaces; its per-capita incomes and development stages are radically different. More important than geography, however, is the absence of convergent political trust. India and China are competitors, Iran and the UAE are security rivals, Egypt and Ethiopia have tensions around the Nile, Russia is at war and several members rely on Western security or financial systems. Distance does not make international cooperation impossible. It does make institutional integration more expensive. The decisive difference is that Europe gradually pooled sovereignty, while BRICS members defend sovereignty as the protection against one another and against the West. BRICS can build issue-specific cooperation. It cannot simply copy the EU's route from a common market to a supranational community. Modi and the summit that risks becoming larger than the bloc For Narendra Modi, New Delhi is not only a BRICS chairship; it is a stage. Hosting Xi Jinping, Vladimir Putin and Masoud Pezeshkian allows the Prime Minister to appear as the intermediary who can speak to Washington, Moscow, Tehran, the Gulf and the wider Global South. The image is politically valuable because India's domestic atmosphere has become less deferential. The 2026 Gen Z and Cockroach Janta Party protests over examination failures, unemployment and institutional accountability forced the resignation of the Education Minister and punctured the aura of political invulnerability. [12] There is nothing unusual about a leader using international diplomacy to reinforce domestic legitimacy. The danger is more specific: the host may confuse the visibility of the leader with the capacity of the institution. A motorcade, a family photograph and a carefully choreographed Delhi can project arrival. They cannot settle the India-China border, generate jobs, lower food prices or substitute for democratic accountability. This is where the word megalomania becomes analytically useful, if used carefully. It is not a diagnosis of a person. It describes the temptation to make the summit's grandeur a proxy for its outcomes - to make the host leader's image larger than the bloc's actual capacity. The summit may be more valuable to Modi's international branding than to BRICS' collective machinery. Xi's visit, Modi's meeting with Putin and the Iran track can produce useful bilateral results, but bilateral diplomacy is not the same as institutional delivery. The Delhi lockdown intensifies the symbolism. When commuters, vendors and workers absorb the costs of a summit built around the language of resilience and inclusiveness, the event must answer a simple question: resilience for whom? Global leadership that requires the ordinary city to disappear for the cameras can look less like public diplomacy and more like state-managed spectacle. A Tibetan protest near the security perimeter underscored the limits of total control. What would count as a real outcome A non-damp-squib summit does not need to create a currency or end a war. It needs to replace slogans with measurable, voluntary and reviewable delivery. The first test is payments: a named pilot corridor, published technical standards, a timetable for CBDC or instant-payment interoperability and a transparent method for managing currency swaps and trade imbalances. The second is finance: a larger and more nimble NDB pipeline, more local-currency lending, and public milestones for projects rather than only aggregate approvals. The third is economic resilience: customs cooperation, common standards, trade documentation, supply-chain mapping and support for small businesses. These are less glamorous than a dollar-dethroning announcement, but they are where transaction costs fall and jobs can be created. The fourth is climate and disaster cooperation: shared early-warning systems, satellite data, resilient infrastructure and rapid-response protocols. A theme of sustainability becomes credible only when a village, port or city can show that the warning arrived earlier and the bridge was built safer. The fifth is institutional honesty. BRICS should publish a clear membership list, define the partner-country category, explain whether every matter requires unanimity and report what each chair inherits from the previous one. If consensus remains the rule, members should stop describing every statement as collective policy. A platform becomes more credible when it admits the difference between a common position, a chair's summary and a national reservation. India's most intelligent strategy is neither to abandon BRICS nor to pretend it is an alternative world government. New Delhi should use the group for what it can do: widen the bargaining space of the Global South, build practical finance and payment links among willing members, keep China from monopolising the agenda and preserve bridges to Western markets. Strategic autonomy works only when it is operational, not when it is printed on a summit banner. The verdict high octane outside damp squib inside Will the New Delhi summit be high-octane? Yes - in security, symbolism, bilateral meetings, media choreography and the sheer presence of leaders who represent an enormous share of humanity. Will it transform BRICS into a coherent alternative pole? No. The common currency will not happen. The dollar will not be dethroned by declaration. The wars in Ukraine and West Asia will not acquire a shared BRICS solution. The India-China rivalry will not be dissolved by a photograph. Trump's tariff threats will not produce a common economic front because every member calculates vulnerability differently. Yet a damp squib is not the same as a complete failure. BRICS matters because it gives the Global South a room of its own, and because even imperfect institutions can change bargaining power over time. The NDB, local-currency lending, payment interoperability, climate finance, health cooperation and collective demands for IMF, World Bank and UN reform are not nothing. They are the beginnings of a more plural order - provided they are funded, measured and implemented. The historical significance of New Delhi will therefore be diagnostic rather than revolutionary. BRICS has become too important to dismiss and too divided to lead. It is a barometer of multipolarity, not yet its engine. Its promise is representation, bargaining power and experimentation. Its poor delivery is the absence of binding rules, common strategic interests and an enforcement culture. The final verdict is blunt. India can host a spectacular summit, and Modi can emerge from it looking like the indispensable statesman of a fractured world. But if the declaration contains only managed ambiguity, the spectacle will be bigger than the bloc. BRICS will leave Delhi with its relevance reaffirmed and its contradictions unresolved: a big promise, a modest delivery, and a warning that multipolarity without trust is merely a crowded photograph. Sources and Further Reading [1] Press Information Bureau Government of India BRICS Evolution Cooperation and India's Leadership (10 September 2026). https://www.pib.gov.in/PressNoteDetails.aspx?NoteId=159946&ModuleId=3&reg=3&lang=1 Official 2026 chairship, membership, scale and ministerial outcomes. [2] BRICS India 2026 About Us (accessed 12 September 2026). https://www.brics2026.gov.in/about-us/ Official Indian presidency site. [3] Reuters The evolution of BRICS and its challenges today (12 September 2026). https://www.reuters.com/business/finance/evolution-brics-its-challenges-today-2026-09-12/ History, membership uncertainty, NDB, payment initiatives and Trump tariff threats. [4] New Development Bank Home and About NDB (accessed 12 September 2026). https://www.ndb.int/ Official project and financing figures. [5] Reuters BRICS talks end without joint statement exposing divisions over war in Iran (15 May 2026). https://www.reuters.com/world/china/india-issues-chair-statement-after-brics-meeting-amid-differences-over-gulf-2026-05-15/ Iran UAE disagreement and the May ministerial outcome. [6] Reuters India to push BRICS digital currency link despite hurdles (10 September 2026). https://www.reuters.com/world/china/india-push-brics-digital-currency-link-despite-hurdles-says-2026-09-10/ CBDC interoperability and political and technical constraints. [7] Reuters BRICS finance chiefs urge reform of global development financial institutions (11 September 2026). https://www.reuters.com/business/finance/brics-finance-chiefs-urge-reform-global-development-financial-institutions-2026-09-11/ Tariffs, payment interoperability and institutional reform. [8] International Monetary Fund Currency Composition of Official Foreign Exchange Reserves (26 March 2026). https://data.imf.org/en/news/imf%20data%20brief%20march%2027 Reserve shares for the US dollar and renminbi in 2025 Q4. [9] Federal Reserve The International Role of the US Dollar 2025 Edition (18 July 2025). https://www.federalreserve.gov/econres/notes/feds-notes/the-international-role-of-the-us-dollar-2025-edition-20250718.html Structural foundations of dollar international use. [10] Reuters India China relations from conflict to cautious thaw (12 September 2026). https://www.reuters.com/world/china/india-china-relations-conflict-cautious-thaw-2026-09-12/ Galwan, disengagement, trade and Xi's 2026 visit. [11] Reuters Trump says agreed trade deal with India (2 February 2026). https://www.reuters.com/world/india/trump-says-agreed-trade-deal-with-india-2026-02-02/ Reported tariff reduction and associated bilateral concessions. [12] Reuters India's Instagram Gen Z dents Modi's aura ahead of key state polls (25 July 2026). https://www.reuters.com/world/india/indias-instagram-gen-z-dents-modis-aura-ahead-key-state-polls-2026-07-25/ Domestic youth protests and political image context. ...Read more

12 Sep 2026

VEIU 2026 brings educators, climate advocates, institutional leaders and change-makers from across the world to Nairobi, linking quality education, climate action, transformational leadership and sustainable development. The five-day summit aims to turn global dialogue into lasting partnerships, practical action and meaningful community impact. SummaryVEIU 2026 will bring global educators, researchers, leaders, businesses, NGOs and change-makers together in Nairobi from 27 November to 1 December 2026. Centred on climate action, quality education, transformational leadership and sustainable development, the summit seeks to move beyond conferences and declarations towards practical collaboration. Its programme includes international forums, graduation and recognition ceremonies, partnership and MoU signings, climate discussions, community outreach and cultural engagement. The article highlights the need for education to serve the public good and for leadership to connect global challenges with local realities. It also stresses that partnerships must produce measurable outcomes rather than remain ceremonial agreements. Ultimately, VEIU 2026 presents Nairobi as a platform where diverse perspectives can come together to build more responsible, inclusive and sustainable futures. KeywordsVEIU 2026, VEIU International Summit, Nairobi summit, global partnerships, climate action, quality education, transformational leadership, sustainable development, Vision for Excellence International University, Nairobi Kenya From 27 November to 1 December 2026, Nairobi will become the meeting ground for educators, climate advocates, institutional leaders, researchers and change-makers committed to turning global conversation into meaningful action. Nairobi Is Ready for a Different Kind of Summit Nairobi does not merely host conversations about the future. It makes the future visible. It is a city where technology and tradition meet, where universities, enterprises, civil society, culture and community life exist alongside the raw challenges of inequality, climate vulnerability and rapid urban transformation. It is both an African capital and a global crossroads—a fitting setting for a summit that seeks to connect excellence with responsibility. Against this vibrant backdrop, Vision for Excellence International University—VEIU—under the able leadership of its very young and dynamic Africa Chancellor, Dr James Bamwesa, will convene the VEIU 2026 International Summit from 27 November to 1 December 2026. Spread across five days and four nights, the gathering will bring together university leaders, graduates, academics, researchers, government representatives, development partners, business executives, entrepreneurs, NGOs, faith leaders, students and professionals from Africa and around the world. Its central theme is ambitious and urgent: Building Global Partnerships for Climate Action, Quality Education, Transformational Leadership and Sustainable Development. This is not a decorative slogan. It is a statement about how the world must now learn to work. Speakers:Prof James Bamwesa / D.R CongoMahesh Kumar / IndiaDr.Malini EaganathanCorina Sujdea / RomaniaDr Rajanikant Bhatt / IndiaDr Susan Anjalo / KenyaLia Rusu / RomaniaDr Manuela Dan / DenmarkErmina Raescu / RomaniaDr Watongoka Hubert / D.R CongoDr Ezzat Hassan / EgyptProf Ujjwal K. Chowdhury / IndiaProf. Ryo Takahashi  / JapanDr Jimmy Ambajo / KenyaDr. Anabel A. Njiiri / KenyaTithi Bhalla / UK A Summit with a Question, Not Just a Schedule The world has no shortage of conferences. It has no shortage of declarations, photographs, ceremonial handshakes and carefully worded resolutions. What it needs is a stronger connection between knowledge and action. The VEIU 2026 International Summit is designed around that larger question: What happens when experts, scholars, leaders, innovators and change-makers come together with the intention not merely to speak, but to build? The answer cannot be measured only by the number of delegates in a hall. It must be measured by the partnerships that continue after the event, the ideas that become programmes, the students who find new opportunities, the communities that receive practical support and the institutions that become more accountable to the future. The summit programme reflects this wider ambition. It will include international conferences, leadership forums, a climate action and sustainable development forum, a graduation ceremony for VEIU students, honorary doctorate awards, international excellence awards, strategic partnership and Memorandum of Understanding signing ceremonies, a meeting of the Board Members of Together for Africa, and community outreach and cultural experiences in Kenya. Together, these elements create something more meaningful than a conventional academic gathering. They create a leadership laboratory. Education Must Become a Force for Public Good Quality education is one of the summit’s four central pillars because education remains the most powerful long-term instrument of social transformation. But education cannot be reduced to buildings, examinations, certificates or institutional rankings. Its deeper purpose is to develop people capable of thinking independently, working collaboratively, acting ethically and responding creatively to complex problems. The summit’s international graduation ceremony will therefore carry a meaning beyond celebration. Every graduation is also a public promise. A graduate leaves not only with knowledge, but with a greater responsibility to society. The real value of a degree is demonstrated when learning improves decisions, strengthens communities and expands human possibility. The international character of the Nairobi gathering reinforces this idea. When people from different educational systems, cultures and professional backgrounds meet, learning moves in multiple directions. A Kenyan perspective can challenge an Indian assumption. A European experience can illuminate an African priority. A Japanese approach to discipline and innovation can enrich a global conversation. A Malaysian, Egyptian or Congolese insight can reveal the limits of one-size-fits-all solutions. That is leadership learning at its best: not the transfer of information from one expert to an audience, but the creation of new understanding between people. Climate Action Is the True Test of Leadership Climate action cannot remain a specialist conversation confined to environmental forums. It is now inseparable from education, public health, food security, migration, livelihoods, urban planning, finance, technology and social justice. A community facing water stress experiences climate change differently from a corporation calculating its emissions. A student worried about employment sees sustainability through a different lens from a policymaker designing a national transition. The climate action and sustainable development forum at VEIU 2026 has the potential to bring these perspectives into the same room. The essential leadership question is not simply whether the world understands climate change. It is whether institutions are prepared to change their priorities because of what they understand. Transformational leaders must be able to connect global goals with local realities. They must ask how sustainability can create dignified work, how innovation can reach underserved communities, how education can prepare young people for green economies and how partnerships can move resources towards those who need them most. Climate action requires more than individual virtue. It requires institutional courage, financial commitment and cross-border collaboration. No university, government, NGO or business can solve the challenge alone. The summit’s emphasis on global partnerships is therefore not an accessory to climate action. It is its operating principle. Leadership Begins Where Certainty Ends Transformational leadership is often confused with charisma. Yet the most valuable leaders are not necessarily the loudest people in the room. They are the people who can listen deeply, absorb complexity, recognise their own limitations and still act with courage. The Nairobi summit will place leadership alongside education and climate action because the three are inseparable. Education without leadership can remain theoretical. Leadership without ethical grounding can become domination. Climate action without imagination can become a technical exercise without social legitimacy. The leaders of the next decade will need to work across disciplines and identities. They will need to understand data and human emotion, innovation and inequality, economic growth and ecological limits. They will need to build trust in environments where trust is increasingly fragile. Most importantly, they will need to understand that leadership is not the possession of power. It is the responsible use of influence. A Room Large Enough for the World The summit’s most powerful asset may be the diversity of voices assembled in Nairobi. At its centre will be Prof James Bamwesa, Chancellor of Vision for Excellence International University and a leading figure in the summit’s vision. The programme also brings together contributors from Africa, Asia and Europe, reflecting the belief that the world’s most urgent challenges require more than one geography or one intellectual tradition. The international speaker group includes Dr Malini Eaganathan from Malaysia; Mr Mahesh Kumar, Prof Ujjwal Anu Chowdhury and Dr Rajanikant Bhatt from India; and Ms Corina Sujdea, President of RELTTAW, together with Ms Lia Rusu and Ms Ermina Raescu from Romania. Kenya will be represented by Dr Susan Anjalo, Dr Anabel A Njiiri and Dr Jimmy Ambajo. The wider African presence includes Dr Ezzat Hassan from Egypt, Dr Watongoka Hubert from the Democratic Republic of Congo and Mr Jean Hubert from Cameroon. Dr Manuela Dan brings the perspective of Denmark, Prof Ryo Takahashi represents Japan, and Ms Tithi Bhalla contributes the perspective of the United Kingdom. This is more than a list of speakers. It is a map of possibility. The significance lies not in placing famous names on a stage, but in allowing different experiences to challenge one another. The summit can become a space where participants discover that international collaboration does not mean erasing difference. It means using difference intelligently. Partnerships That Survive the Handshake The main organiser is Vision for Excellence International University, Africa, with RELTTAW serving as principal partner. The summit is supported by an extensive network of partner organisations: USK-BUKAVU, the World Book of Records London, SustainVerse.org, the International University Institute of Innovation, Global Goals Connections, EDX Global, AAHAE, the International Association of Theological Institutions, FIDES Denmark and RELTTAW. Their participation sends an important message. Global partnerships must be more than logos arranged beneath an event title. They must create pathways for shared research, student mobility, institutional development, innovation, community engagement, entrepreneurship and sustainable action. A Memorandum of Understanding is easy to sign. The harder task is to turn it into a living relationship—with responsibilities, timelines, measurable outcomes and people committed to implementation. The Nairobi gathering will be judged by whether its partnerships continue to produce value long after the final ceremony. The strongest collaborations will be those that connect institutions not only to one another, but also to communities that are usually excluded from international conversations. Recognition Must Become Responsibility Honorary doctorate awards and international excellence awards—including recognition for women in leadership—will form an important part of the summit. In a world filled with badges, titles and public profiles, recognition must be handled with seriousness. An honorary doctorate should not be understood merely as a ceremonial distinction. It should represent a record of contribution and a renewed obligation to serve. Similarly, excellence awards should not only celebrate achievement. They should make achievement visible as a source of inspiration for others. Recognition becomes meaningful when it encourages young people, honours public-minded work and strengthens the social value of leadership. The summit’s recognition ceremonies can therefore become moments of reflection: What kind of excellence does the world need now? Is success measured only by personal advancement, or also by the number of lives improved, institutions strengthened and futures protected? “Together for Africa” Must Be a Working Promise The presence of the Together for Africa initiative gives the summit a distinctive moral and developmental centre. The scheduled meeting of its Board Members in Nairobi suggests a focus beyond conference proceedings. It points towards an effort to build sustained cooperation around African priorities, African talent and African possibilities. The community outreach programme and Kenya cultural and tourism experience are equally significant. A summit about Africa should not speak about Africa only from inside a conference hall. It must encounter the people, places, histories and aspirations that give the continent its meaning. Culture is not an optional addition to development. It shapes identity, dignity, social cohesion and economic opportunity. Community engagement, likewise, reminds leaders that every grand policy ultimately reaches a real person, family, school, workplace or neighbourhood. “Together for Africa” is therefore best understood as a working verb. It asks participants to move from speaking for communities to listening to them, working with them and investing in their future. Five Days, One Leadership Laboratory Across five days, VEIU 2026 will offer participants multiple entry points into leadership learning. The graduation ceremony will underline the public purpose of education. The international leadership conference will explore how influence can be exercised ethically and effectively. The climate and sustainable development forum will connect environmental responsibility with institutional action. The partnership and MoU ceremonies will test whether cooperation can become more than symbolism. The excellence awards will ask what achievement should look like in an unequal and uncertain world. The community and cultural programmes will bring the conversation back to people and place. A participant may arrive in Nairobi seeking a certificate, a connection, a platform or a new professional opportunity. The deeper value of the summit will be found in what that participant carries home: a more expansive understanding of leadership, a sharper awareness of global interdependence and perhaps one partnership capable of changing a community. That is the difference between attending an event and becoming part of a movement. Where Excellence Meets the World The VEIU 2026 International Summit comes at a moment when the world is searching for bridges—between generations, nations, disciplines, institutions and communities. Nairobi offers the setting. VEIU offers the platform. The speakers offer diverse experience. The partner organisations offer networks. But the final outcome will depend on the willingness of participants to learn, listen and act. The summit’s promise can be expressed simply: together for education, together for climate action, together for leadership and together for global partnerships. From Africa to Europe, Asia and beyond, one shared vision will come into focus—that excellence is not complete until it serves humanity. www.SustainVerse.org is proud to be the media partner of this historic leadership summit at Nairobi VEIU 2026 International SummitNairobi, Kenya | 27 November–1 December 2026Theme: Building Global Partnerships for Climate Action, Quality Education, Transformational Leadership and Sustainable DevelopmentContact: info@veiuniversity.org | +40 769 266 040 | +254 759 913 318 ...Read more

11 Sep 2026

Ahmedabad, once seen as a pioneer in urban climate adaptation, has been ranked the least climate-resilient major city in the world in a new AlphaGeo study. The finding exposes a widening gap between the city’s climate-risk exposure and the effectiveness of its adaptation measures.  SummaryA new AlphaGeo study has placed Ahmedabad at the top of a global ranking of cities facing the highest residual climate risk, raising questions about whether existing adaptation measures are keeping pace with worsening hazards. The study assessed 72 major cities using its Climate Risk & Resilience Index, which considers both physical exposure to hazards and the level of protection provided by adaptation measures. Ahmedabad recorded a resilience-adjusted risk score of 41, largely driven by extreme heat, while several other South Asian cities also featured among the higher-risk locations. The ranking is particularly significant because Ahmedabad has long been presented as a climate-adaptation pioneer. Following the deadly 2010 heatwave, the city introduced South Asia’s first Heat Action Plan, with measures including heat alerts, public-health advisories, cooling interventions and reflective roofs. However, the AlphaGeo assessment suggests that such interventions have not been sufficient to close the city’s wider adaptation gap as climate threats intensify.  The study also highlights a broader South Asian problem, where cities face substantial exposure to heat, flooding and other hazards while adaptation investment remains comparatively limited. Hyderabad, Multan, Dhaka, Kolkata and Lahore were among the other cities with high resilience-adjusted risk scores. In contrast, Chicago recorded the lowest score among the cities studied, while Beijing, Tianjin and Shenzhen were highlighted for relatively strong adaptation efficiency.  For Ahmedabad, the challenge extends beyond heat. Rapid concrete development, limited tree cover in several neighbourhoods, heat-retaining surfaces, shrinking natural drainage channels and waterlogging during intense rainfall can increase residents’ exposure to climate extremes. The risks are also unevenly distributed, with poorer communities often having less access to shade, cooling and reliable infrastructure.  The study therefore raises a larger question about what climate resilience should actually mean for a city. A heat action plan or adaptation policy can provide an important framework, but resilience ultimately depends on whether those measures translate into safer neighbourhoods, functioning infrastructure and protection for people most exposed to climate hazards. For Ahmedabad, the ranking is a warning that climate leadership cannot be measured only by the existence of policies; it must also be judged by how effectively those policies reduce risk on the ground.  Original Writer & Courtesy Original writer: Rajiv Shah  Original article: “Ahmedabad world’s least climate resilient major city: AlphaGeo study”Courtesy: Counterview.net Counterview.net ...Read more

10 Sep 2026

  SummaryThe present is tumultuous with all kinds of disasters looming in and guess what, we are to blame mostly. In the actively changing and evolving Himalayas, claws of so called development seep in causing the Himalayas to bleed and the rivers changing their courses, changing their planform, often flooding and leaving millions homeless. Be it the charlands of West Bengal or the upstream stretches of Ganges in the Himalayas, anthropogenic activities in the form of river engineering, development of smart cities, river linking projects and what not, we are interrupting with the fluvial dynamics only to get doomed.  KeywordsAvulsion, fluvial dynamics, Anthropocene, equilibrium  Avulsion and shifts in river courses are characterized by scouring of riverbed and banks. These phenomena are common in case of Himalayan rivers and have been on the increase in the Anthropocene. Humans can completely alter a river system turning it into a controlled one by damming its course, by flow diversion, by dredging or clearing the channel, by straightening the channel pattern or by increasing its supply via an artificial channel. In order to control flooding and river bank erosion, channels are frequently modified. Modifications of channels often include channel widening, channel deepening, artificially cutting meanders and even channel straightening. This jeopardizes the hydrologic regime. Also, if channelization occurs, higher flows are often found downstream as the water rushes out of the channelized reach. High backwaters are resulted, resulting channel deposition lowering the channel capacity.   A direct change in the river system is caused when dams are constructed. The hydrologic regime is altered by flow regulation, decreasing peak flows and increasing low flow. As a result, sediment transport capacity is modified inducing erosion and deposition affecting channel morphology. Dams also cause deposition in and above the reservoirs which thereby lose their capacity to retain water. Spillway water from dams is devoid of sediment load and thus tends to erode the channel immediately downstream.  The case of Aswan dam can be cited as an example where scour erosion is noted in the lower reaches, with a lean sediment transport and downstream erosion as the flow is regulated. Increase in depth and decrease in width is also reported for other channels which have experienced dam construction.  Morphologic discourse of the Ganga valley leads to its classification into 7 segments (Singh and Singh, 1992). Variation in discharge, sediment load, ground slope, anthropogenic activities and tectonics result in variation in channel morphology (Valdiya, 2003). Geology, geomorphology, climate alongwith human influence modifies fluvial dynamics. The outer Himalayan belt consists of recently uplifted Siwalik of Miocene Pliestocene detritus filled sediments – coarse sandstones, clays and conglomerates. Except the Siwaliks, the concerned region is a portion of the Ganga megafan and this surface shows several north-south aligned drainage channels (Shukla et al., 2001). This region is deeply incised by the active Ganga River and other rivers. Active incision of channel over the megafan surface is evidenced by the prominent channel scarps.  Over the years, channel sedimentation with the formation of channel bars in Ganga and other rivers is observed. Decline in the number of bars accompanied with increase in size of the bars indicates rapid silt deposition. Sandbars are observed to change occasionally during floods. The shifting nature of Ganga channel is evidenced by the presence of an abandoned channel within the cross section situated below the Chandi bridge, located on the left bank of river Ganga at Nildhara area.  The Bhimgoda barrage is located on river Ganga at Har ki Pauri. It was built as the headworks of upper Ganges canal. The initial barrage was completed by 1854. Replaced twice, the barrage was completed in 1983. The primary purpose of the barrage was irrigation; it was also used to generate hydroelectricity and used for flood control. The barrage has a length of 454 m and a spillway capacity of 19,300 m3/s.  The local geomorphology of the Ganga River is significantly altered due to the construction of the Bhimgoda barrage as it results in huge diversion of water into the upper Ganga canal. This leads to excessive in channel sedimentation in both upstream and downstream courses interrupting the natural channel equilibrium. As a result, the flow velocity is reduced in the lean periods with the reduction in monsoonal rainfall. The braided floodplain dynamics also gets altered as a result.  The Bhimgoda barrage diverts the the river water into the upper Ganga canal for hydroelectric power generation. Studies indicate that water velocity of river Ganga is about 1-1.9 m/s in the Haridwar region after the Bhimgoda barrage (Kumar et al., 2023).  There have been drastic changes in water discharge, sediment concentration and calculated sediment load before and after the construction of the Bhimgoda barrage. The water discharge was uninterrupted with high velocities (reaching up to 1.5-2 m/s), with massive flushes during monsoon. Post construction, this discharge has become fractioned upto 300-400 cumecs are permanently diverted out of the river into the canal system. Sediment concentration was highly variable before the construction (varying from <50 mg/l in winter to >2000 mg/l in monsoons). Post construction sediment concentration has become high upstream of the gates, heavily diluted getting finer downstream due to sediment trapping. The calculated sediment load used to pass uniformly downstream scaling up to 8 million tonnes/day across the upper Ganga. Post construction this has been disrupted, massive trapping upstream now leads to a drastically lower calculated sediment load footprint in the downstream riverine stretch.  Braiding index according to Brice has been calculated for this stretch for the years 1916,1972,2005 and 2026. The braiding index in 1916 was 7.347, for 1972 it was 6.76, in 2005 it was 5.4779 and in 2026 it increased to 6.26.                                                                           Fig 1: Location of Bhimgoda barrage and change in braiding immediately upstream and downstream of the barrage (1916,1972,2005,2025)        Source: SurveyofIndia toposheets 53K/1 and Google Earth Imagery)  Photo 1: Braiding and bar formation in the vicinity of Bhimgoda barrage (Dutta, 2001)  Fig 1: Changes in braiding at Haridwar, with location of Bhimgoda barrage (1916,1972,2005,2025 – Source: Survey of India toposheets 53K/1 and Google Earth Imagery)  Increase in braiding index indicates that a river is shifting from a single channel into a more complicated network of multiple branching channels which rejoin each other and are separated by islands or sandbars. Often this indicates higher sediment loads, unstable banks and changing water flows. There is also more fluctuation of discharge. Factors like flatter slope leads to a velocity drop, initiating sediment deposition and weak riverbanks which can collapse easily widening the active channel belt. Increase in stream power can also cause increasing braids. Anthropic interference in the form of river engineering works thus often lead to modifications in fluvial dynamics interrupting the morphologic equilibrium of rivers.  References:  Dutta R.K. (2017): Controlling Factors of Channel Shifting and Avulsion in Haridwar District, Uttarakhand Geographical Review of India 79(2) June 2017, 153-167 Kumar D, Kumar A, Malik D.S., Sharma R and Gupta V (2023): Effect of Barrages and Anthropogenic Activities on Ecological Integrity of the Ganga River: A Review on  Current Issues and Restoration Efforts AgroEnvironmental Sustainability, 2023, 1(1), 67-75 https://doi.org/10.00000/s2023010109  Shukla, U. K., Singh, I. B., Sharma, M., & Sharma, S. (2001). A model of alluvial megafan sedimentation: Ganga Megafan. Sedimentary Geology, 14, 243–262. Singh, M., & Singh, I. B. (1992). The Ganga River Valley: Alluvial valley in an active foreland basin. In 29th International Geological Conference, Kyoto, 2 (p. 30). Japan. Valdiya K.S. (2003): Reactivation of Himalayan Frontal Fault, Current Science, 85(7), 2001 1031-1040. ABOUT AUTHOR  Dr Karabi Das, Masters in Geography from University of Calcutta, former Senior Research Fellow, UGC, PhD on Physical and Socioeconomic changes in the Indian Sundarban is presently working as Assistant Professor of Geography, Dr Kanailal Bhattacharyya College, Howrah.She has participated in many national and international seminars and has 12 papers and 10 book chapters to her credit.Her areas of interest include Fluvial Geomorphology, river in equilibrium and human environment relationship. ...Read more

09 Sep 2026

Pune’s ambitious riverfront project is facing questions over flood safety, shrinking river space, ecological damage, sewage treatment and climate resilience, with SANDRP warning that a project meant to rejuvenate the Mula-Mutha could instead increase the city’s vulnerability. SummaryPune’s River Front Development (RFD) project is being questioned by environmental researchers and urban-planning experts over its flood calculations, ecological impact and compliance with existing regulations. A technical presentation by architect and riverfront researcher Sarang Yadwadkar, discussed by SANDRP, examines the project’s Detailed Project Report, government correspondence, Water Resources Department guidelines and environmental-clearance conditions. The analysis raises five central questions: whether the flood values are accurate, whether the river’s cross-section will be maintained, whether the effect of river confluences has been considered, whether climate change has been factored into planning, and whether Indian standards for river embankments are being followed. Concerns also extend beyond flood risk to the loss of riparian vegetation, inadequate sewage treatment and the construction of structures within the riverbed. With the project already substantially advanced, the debate is increasingly about whether Pune is creating a safer riverfront or altering the river in ways that could worsen future flood and ecological risks.  KeywordsPune riverfront project, Mula-Mutha river, Pune flood risk, riverfront development India, Pune river ecology, flood safety, climate resilience, river conservation, riparian forests, sewage treatment Pune, urban river management, environmental impact, sustainable urban development, riverbed construction, Maharashtra environment, SANDRP analysis, environmental governance, floodplain protection Is Pune building a riverfront or increasing the river’s risks? Pune’s River Front Development project has been presented as an effort to transform and rejuvenate stretches of the Mula-Mutha river system. The project, designed by HCP Design, Planning and Management Pvt. Ltd., has also drawn comparisons with the Sabarmati Riverfront project in Ahmedabad. SANDRP notes that the two river systems have substantially different landscapes and hydrological conditions, raising questions about whether a similar model can safely be applied to Pune.  The technical analysis highlighted by SANDRP focuses particularly on the project's stated objective of reducing flood risk. It examines the seven upstream dams, the three major river confluences within Pune and the flood-discharge figures used in the project planning. 1. Are the flood values being used correctly? One of the most significant concerns relates to the flood values used to design the riverfront. According to the SANDRP analysis, the flood figures used in the RFD project differ substantially from figures provided by Maharashtra’s Water Resources Department. At the Mula-Mutha confluence, the RFD project reportedly uses a 100-year flood discharge of 4,760.89 cubic metres per second, while the WRD figure cited by SANDRP is 12,868.80 cubic metres per second.  The analysis argues that the project calculations do not adequately account for water released from all seven upstream dams as well as runoff from the free catchment area between the dams and Pune. Another concern is the confluence or backwater effect. When rivers meet, changes in flow and water levels can cause water to back up upstream. SANDRP says Maharashtra WRD guidelines require this effect to be considered when flood lines are determined. The analysis therefore concludes that the flood values used in the project may be significantly underestimated. 2. Will the river’s natural cross-section be maintained? The second question concerns the amount of space being left for the river itself. SANDRP's analysis points to project documents indicating changes to the river's cross-section as a result of the proposed riverfront structures and land works. It argues that reducing the available river section can have consequences during extreme flows, particularly when the city is already facing intense rainfall events. The analysis also refers to correspondence between the Pune Municipal Corporation and the Water Resources Department concerning changes to the river's cross-section. According to the presentation, these changes raise questions about whether the project complies with conditions attached to its environmental clearance and WRD guidelines.  3. Has the confluence effect been considered? The Mula-Mutha system is not simply one uninterrupted river channel. Multiple rivers meet within Pune, making the behaviour of water during extreme rainfall more complicated. SANDRP's analysis argues that the project’s flood modelling does not adequately account for these confluence effects. This matters because water moving through a river can slow or back up when it encounters another high-flow channel. During a cloudburst or major rainfall event, simultaneous releases from upstream dams could send large quantities of water towards the city within a relatively short period. The analysis therefore questions whether the project's flood calculations accurately represent what could happen during an extreme event.  4. Where is climate change in the planning? Climate change is another major concern raised by the analysis. A Maharashtra government climate assessment prepared by TERI in 2014 projected changes in rainfall patterns, including increased rainfall intensity alongside changes in the number of rainy days. SANDRP argues that such climate projections do not appear to have been adequately incorporated into the RFD's planning and flood assessment.  This becomes particularly important as Pune experiences increasingly intense rainfall events. Infrastructure designed around historical rainfall patterns may face higher risks if future rainfall becomes more extreme. For a project costing thousands of crores, the analysis argues, climate resilience should be a central part of the design rather than an afterthought. 5. Are Indian standards for river embankments being followed? The fifth question concerns the location and design of embankments. Indian standards for river embankments recommend aligning such structures with the natural banks of rivers. SANDRP's analysis argues that parts of the Pune project instead place embankments further into the riverbed. The presentation also highlights construction and debris dumping within the river area, including a road reportedly being built within the floodline. According to the analysis, information obtained through RTI indicated that the riverbed road did not have the necessary WRD clearance or studies from relevant technical agencies.  Flooding has already raised concerns The debate is not entirely theoretical. The SANDRP analysis refers to an August 2025 event when a flood level reportedly exceeded the threshold at which the riverfront was expected to remain safe. The presentation states that a discharge of 71,408 cubic feet per second resulted in flooding/submergence of parts of the riverfront, despite the project's stated threshold being considerably higher.  The analysis argues that additional construction within flood-prone areas could further restrict the river's natural capacity and potentially increase flood levels and their horizontal spread. The ecological cost Flood safety is only one side of the debate. SANDRP and environmental experts also raise concerns about the destruction of riparian forests and riverine habitats. These areas support native trees, natural vegetation, birds, aquatic organisms and the wider ecological connection between land and water.  The Pune Municipal Corporation has proposed planting around 45,000 trees, but environmentalists argue that plantations cannot simply replace naturally evolved riparian ecosystems. Jeevitnadi Foundation's Shailaja Deshpande, quoted by Counterview, argues that natural riparian species and ecosystems perform functions that conventional plantations cannot replicate, including supporting aquatic life and maintaining interconnected food chains.  A riverfront cannot be separated from sewage management Another contradiction highlighted in the Counterview report is the gap between the promise of a cleaner river and Pune's sewage-treatment capacity. The city reportedly generates around 1,634 MLD of sewage. Even after the JICA-supported sewage treatment programme is completed, Counterview reports that an estimated 629 MLD of untreated sewage could continue entering the rivers.  This raises a fundamental question: can a river be genuinely rejuvenated through landscaping and embankment construction if untreated sewage continues to enter the system? Environmentalists cited in the report have also questioned whether existing sewage-treatment plants are consistently meeting CPCB standards.  The Sabarmati comparison Ahmedabad's Sabarmati Riverfront has often been presented as an inspiration for Pune's project. But the comparison has also become controversial. Counterview notes that portions of the Sabarmati Riverfront were submerged during the monsoon, adding to questions about the suitability of replicating the model elsewhere. The SANDRP analysis argues that Pune's river basin has its own hydrological characteristics and should not simply be treated as another version of the Sabarmati.  Legal and procedural questions The project has also faced environmental and legal challenges. Counterview reports that the National Green Tribunal had previously directed the Pune Municipal Corporation to amend aspects of its environmental clearance and had halted tree-felling activity. An amended clearance issued in 2024 was subsequently challenged as well.  SANDRP's analysis further points to differences between the project's Detailed Project Report and Environment Impact Assessment, including differing descriptions of proposed changes to the riverbed.  What happens next? The project has already reached an advanced stage, with Counterview reporting that around 80% of the priority stretch has been completed and the estimated project cost at approximately ₹4,727 crore. The concern raised by SANDRP is therefore not simply whether Pune should have a riverfront. It is whether the remaining work can be reassessed against actual flood behaviour, ecological conditions, climate projections and regulatory requirements. The larger issue is whether urban river development should prioritise concrete embankments, roads and beautification, or whether the river's natural floodplain, riparian ecosystem and capacity to absorb extreme flows should remain central to planning. The SANDRP analysis ultimately calls for closer scrutiny of the project's flood calculations, environmental impacts and compliance with existing standards before further interventions alter the river irreversibly. SOURCES AND ABOUT AUTHOR Original analysis/presentation: Sarang Yadwadkar, Architect and member of the Planning Committee of the Development Plan of Pune City. Context and explanatory text: Tara Tanmayi S., SANDRP. (SANDRP) Courtesy: Counterview.net — “Riverfront or river death? SANDRP warns of ecosystem collapse.” Counterview.net article ...Read more

09 Sep 2026

SummaryIn an era when the world is perturbed with ecological flow of rivers and river health, man made lakes and natural rivers of Hyderabad are in deep crisis, gasping for breath. In the Anthropocene, maintaining health of the waterbodies seems to be a gruesome challenge. The article hereby takes up all these issues hoping for a better future.  KeywordsEnvironmental flow, health of river, Hyderabad, manmade lakes  Rivers and lakes of Hyderabad are facing severe ecological decline. The major lakes and rivers of Hyderabad and Secunderabad are now considered as poorly rated water quality basins and water flows. Highly polluted untreated sewage, millions of litres of waste are directly meeting the river stretch and urban lakes. Besides, unchecked chemical discharge from nearby manufacturing and industrial centres, dumping of construction debris, plastic waste, and uncontrolled encroachment have led to the degeneration of the river and water bodies of Hyderabad and Secunderabad.  The impact of the degeneration:  Oxygen depletion ------ very low DO, dissolved oxygen even drops down to 0.3mg/l as it is in Durgam Cheruvu ------------ Biologically dead water ------ considered lowest grade 'E quality ' as in Asanikunta and Sunam Cherevu ---- unfit for any public use or ecological use ------------ stagnant water --------- infamous breeding grounds of disease carrying mosquitoes.  Historical Musi River:  Once dynamic and wider, River Musi, a tributary of river Krishna, flows right past the Southern edge of Osmania General Hospital. The river Musi in Hyderabad is heavily polluted with millions of litres of daily untreated domestic sewage, toxic industrial and pharmaceutical waste. Besides urban encroachment and loss of wetlands due to urban expansion have led to the shrinkage of natural water flow and natural vegetation cover.  As per archaeological evidences the oldest settlement on the Musi River bank date back to the 5th century, when Vishnu Kundinis built their capital to the south bank of the river at Indrapalanagar. But the power centres on the Musi River moved westwards to the interior parts of Telengana. The famous Golconda fort is on the north bank of the river.  Musi, popularly known Machukunda, is a major tributary of the Krishna River in Telangana, India. It is flowing through the heart of the Hyderabad city separating old city from the modern urban settlement. It originates from the hill Avantagiri and flows about 250 km before merging with the Krishna River at Vedapalli. Musi is formed by the convergence of two small rivers, the Esi and the Musa. In the late 16th century, Muhammad Quil Qutb Shah found Hyderabad on the banks of Musi River for the expansion of settlement beyond the crowded Golconda fort. A bridge named Purana Pul (old bridge) was constructed in the late 16th century to connect the capital of Golconda.  Even in the 19th century, Musi was a wide, dynamic and ecologically vibrant river. The banks and the ghats of the river Musi experienced many cultural activities of the settlements along the river. The river was then associated with green spaces, temples, washing ghats and grand palaces belonging to the Nizams. People of the nearby settlements used daily for fishing, farming, rituals and drinking water needs.  Bathukamme:  It is a vibrant nine -day floral festival celebrated by the women in Telengana to honour Goddess Gauri and worship nature. Women gather in circles around floral arrangement clapping rhythmically and singing traditional folk songs. Then the Bathukamma, the floral arrangements looking like a conical hill of flowers are floated in water of river Musi. The festival marks praising womanhood, life and nature.  Muharram:  The river Musi served as the traditional culminating point for processions with ceremonial alams. These are brought to the waterfront, sometimes alams are immersed in the river. An alam is crescent - and - star shaped decorative metal ornaments capping a mosque’s dome or minaret. Shia Muslims carry the alams, which represent justice, sacrifice, and the eternal victory of truth over tyranny.  Livelihoods:  Generation after generation washer folks (Dhobis) utilised traditional ghats of the river Musi for community trade and daily urban life. Fig 1: Two stretches of Musi River, 1975 (Source: Survey of India Toposheet no 56K/7, 56K/11)  Fig 2: Musi River, 2026 (Source: Google Earth Image)    Photo 1: Musi river in 2026 (Photo credit: author)  What is the present scenario?  1.  Now the river is reduced to a mostly dry or sluggish water flow within the city. The flow of the river Musi is now being controlled by building two reservoirs named Osman Sagar and Himayat Sagar. The reservoirs were designed for drinking water and flood control.  2. The downstream section of the river has deteriorated from a historic water lifeline to ecologically dead water flow. About 1,00,000 residents across at least 30 downstream villages are highly affected by the polluted stretch of the river.  3.Recent environmental studies indicate that the Musi is one of the most pharmaceutical contaminated rivers. Massive volumes of dumped pain killers, antibiotics and cardiac medicine have created a major global hotspot for drug - resistant bacteria. This has caused loss of efficacy of common medical treatments for the locals.  4. Downstream communities are experiencing severe chronic illness, high rate of kidney disease, skin allergies, stomach infections and various types of cancers, food chain contamination.  5. Over 1.5 lakh acres of agricultural land use this toxic water for the production of crops like cotton, vegetables and paddy. Heavy metals like lead, nickel and chromium are abundantly present in soil, crops, vegetables and local fish. Toxic substances are returning to the plates of Hyderabad residents.  6. Shallow borewells and open wells in the villages along the Musi River are drawing highly saline and contaminated water unfit for consumption as toxic substances reach the local ground water table.  What are the measures taken by the Telengana Government?  The Government of Telengana established Musi River Rejuvenation Project, MRRP. The State Cabinet formally approved 7,345 crore rupees for the execution of core phase 1.  1.Phase 1 execution plan includes on ground cleaning and restoration across a 21 km priority corridor stretching from the Osman Sagar and Himayat Sagar catchment down to Bapu ghat.  2. Sewage Treatment Plants, STP’s, are installed across Hyderabad suburbs. Daily 1,500 million litres of waste water are treated in the plants.  3. Social Rehabilitation: The Government approved allotment of 15,000 double bed room along with financial compensation for legally titled property owners.  4. Urban land and buffer zoning: Boundary along the riverbeds is enforced to clear illegal dump yards and to stop further encroachment of the areas adjacent to riverbed.  Community participation and citizens’ movement:  1. Musi Jan Andolan, MJA, an independent non - political platform-initiated movement to safeguard the Musi River and protect the thousands of families living along the river.  MJA highlights that over 36% of the total project budget is allocated for concrete heavy infrastructure, multi lane roads, bridges, toe walls and retaining walls.  MJA demands tree plantation all along the stretch of the riverbank. The organisation warns that replacing natural river banks with the concrete creates urban heat island effect. Again, it will destroy native vegetation and prevent natural ground water recharge.  2. Community participation in cleaning the river is urgently necessary. The residents of the Hyderabad and Secunderabad should be aware of the result of the death of a once wide and dynamic river like Musi.  The residents should play active role against the dumping of the toxic substances along the riverbank. The pharmaceutical waste must be collected from the hospitals regularly by the concerned authority and the community participation is needed to monitor the matter.  Contaminated and untreated waste water from the houses of the municipal wards should be treated in the treatment plants before mixing with the river water.  Traditional festivals along the river Musi must be restored so that the people can play active role in protecting the river from drying.  RK Puram lake:  The Ramkrishna Puram Lake (RK Puram Lake), originally Mukidigan Cherevu, was constructed by the Nizam in 1798. It was once a massive 100 -acre water reservoir to support the growing Secunderabad cantonment area. The lake was clean up to 1960 and the lake served as a major drinking water source for nearby villages and colonies. It was famous nesting place of migratory birds. Now the lake area came down from 100 acres to only 40 acres. After 1960 following the establishment of public sector unit and housing society the lake became the site of domestic sewage and garbage.  Ramkrishna Puram lake in Hyderabad faces severe degeneration due to unchecked sewage inflows, garbage dumping and uncontrolled encroachment. Once the lake was a highly attractive and beautiful destination, now the urban settlements around the lake experience urban flooding during heavy rain almost every year. Once it was an important reservoir of flood waters.  Causes of degeneration:  1. Untreated domestic waste water are supplied to the lake for years. This had blocked the storm water channels.  2. Rapid urbanization around the lake, primarily due to the availability of water, had caused shrinkage of the lake bed areas.  3. Low lying residential colonies get regularly under water during monsoon. Again, during lean period heavy algae growth foster ideal breeding grounds for disease carrying mosquitoes.  4. Rapid urbanization around the lake and subsequent withdrawal of groundwater in huge amount made the situation worse. Groundwater depletion in and around the lake RK Puram is related to the expansion of urban settlements. Again, natural percolation of surface water during monsoon is being hindered due concrete surface area expansion.    Fig 3: RK Puram lake in 1978 and in 2026 (Source: Survey of India toposheet and Google Earth Image)  Photo 2: RK Puram lake in 2026 (Photo credit: author)  Initiatives to be taken:  1. Illegal constructions around the lake area should be stopped.  2. The lake must not be the natural dumping ground of the urban waste material  3. Regular monitoring of the change in areas of the water surface of the lake.  4. Change detection with the help of satellite images should be done time to time.  5. Seasonal water depth variations should be observed and the data must be restored for restoration of the lake.  6. Auditing inflow points and mapping all storm water drains ensuring rainwater inflow into the lake.  7. Construction debris and sediments should not be allowed to inflow with the rainwater during monsoon.  8. Stopping plastic and trash dumping which is reducing the water holding capacity of the lake.  9. To check the bank failures along the circular pathway for the walkers. Local people are of the opinion that the lake is also experiencing climate change impacts, mainly changing rainfall pattern of the region. In recent past the region experienced enough rainfall during monsoon. K. Shridhar, a local resident with his friends told that in their teens, before thirty years, they enjoyed swimming in the lake. This year also the region has experienced below normal rainfall.  Hossain Sagar:  Even the large Hossain Sagar in Hyderabad (spanning about 5.7sq km) is currently dealing with environmental challenges including high pollution, heavy algal bloom and foul odours. The Hossain Sagar Lake in Hyderabad was built in 1562 AD across the river Musi during the Qutb Shahi dynasty to meet the drinking water needs of the growing settlement outside Golconda fort. The lake was the primary drinking water source for Hyderabad as the lake physically separates the core of Hyderabad from Secunderabad.  It is now an important tourist destination of Telengana with its beautiful necklace roads and the statue of Lord Buddha on the Gibraltar Rock in the middle of the lake.  Fig 4: Hussain Sagar in 1975 and 2026 (Source: Survey of India toposheet and Google Earth Image)  Photo 3: Hussain Sagar in 2026 (Photo credit: author)  Major initiatives taken:  1.Multiple STPs are set up around the lake to check the mixing of untreated sewage inflows.  2.To check the mixing of dry weather sewage from feeder drains like Banjara nala, Picket nala and Balkapur nala diversion structures are constructed.  3. Constant removal activity of floating solid waste.  4. Hossain Sagar Lake and catchment Area Improvement Project was launched in 2006 to upgrade sewerage infrastructure and manage nutrients- rich sediments.  But the result of the initiatives is not satisfactory:  The STPs and interception and diversions systems are not capable to tackle the problem in eradicating the pollution of the lake.  National Green Tribunal, NGT, indicated that nearly 376. 5 million litres per day of waste is still entering the lake.  Balanagar industrial area is still supplying highly toxic chemicals through the Kukatpally nala.  Reports from CAG and the Pollution control Board stated that the lakes Dissolved oxygen, DO, level dropped down below 3 mg/l, while The Central Pollution Control Board recommends 6 mg/ l for a healthy water body.  Citizens Role:  1. Stop single use plastic  2. Segregate waste properly.  3. Traditional Plaster of Paris idols should be discarded, Eco-friendly clay idols for Ganesh chaturthi and Durga should be made, immersion of the idols should be stopped directly in Hossain Sagar, may be immersed in baby ponds.  4. Communities living along the Kukatpally nala should check the mixing of untreated waste by installing simple wire -mesh trash traps at the community drains.  5. Community participation will include vigilance and reporting and giving support by making local lake warrior groups.ABOUT AUTHOR Dr Kanailal DasMasters in Geography from University of Calcutta, former senior research fellow, CSIR, PhD on Vulnerability of Gosaba, Basanti, Sundarban from Vidyasagar University.He has participated in many national and international seminars and has papers and book chapters to his credit.     ...Read more

09 Sep 2026

India’s rural schools are not empty because families have stopped valuing education. They are losing relevance because the system has struggled to deliver learning, capable teachers, functional infrastructure and pathways to a changing world. As India looks towards 2030, rebuilding the rural government school must become a priority—not simply by adding infrastructure, but by restoring capability, dignity and trust. SummaryIndia’s rural government schools face a deeper crisis than declining enrolment: many are struggling to deliver foundational learning, adequate infrastructure, teacher availability and meaningful pathways for children. Despite near-universal enrolment among rural children, learning outcomes remain uneven, while teacher vacancies, single-teacher schools and infrastructure gaps continue to weaken the public-school experience. The challenge is not simply whether schools should remain open, but whether they can become relevant to the aspirations and realities of rural families. The article examines policy efforts under NEP 2020, NIPUN Bharat and the 2030 education agenda, alongside examples of communities and states rebuilding public-school capacity. It argues for stronger teachers, mastery-based learning, digital and AI literacy, nutrition, functional infrastructure, local skills and transparent community participation. By 2030, the real measure of success should be the capabilities and opportunities a rural school gives every child—not merely the number of schools or students on paper. KeywordsRural Education, Rural Schools, Government Schools, Education Reform, Rural India, NEP 2020, Foundational Learning, School Education, Teacher Shortage, Education 2030, Public Education, Education Equity, Digital Literacy, Community Participation, School Infrastructure Why rural India's government schools are losing relevance - and how to rebuild them by 2030 NEP 2020 promises children who can read, reason, create, code and choose a livelihood. In too many villages, the State still struggles to provide the teacher, toilet, meal and lesson needed to get there. The rural school is not redundant. Its delivery model is. The central question in rural Indian education is no longer whether children are enrolled. It is whether the school gives them enough power to read with understanding, handle numbers, communicate across languages, use digital tools safely, question an automated answer and imagine work beyond inherited occupations. Across large parts of the country, government schools remain present in official registers but absent from the future children are being prepared to enter.This is not a claim that every public school is failing, or that private schools are automatically better. Kerala, Himachal Pradesh, Punjab, Tamil Nadu and many individual schools elsewhere show that public education can be rigorous, humane and trusted. Nor is a merger always wrong: a school with five children, one exhausted teacher and no laboratory may need a stronger nearby hub. The harder point is that the average rural public-school design has drifted away from both family aspirations and India's own stated education policy. A school may become empty because families lost faith, and families may lose faith because the school became empty. That is a policy loop, not a verdict on the child.  Access has widened. Learning has not caught up. India has made a significant access achievement. ASER 2024 found that 98.1 per cent of rural children aged 6-14 were enrolled. Families have not rejected education; they have brought children to the school gate. The crisis begins after the gate. In 2024, only 23.4 per cent of Grade III children in government schools could read a Grade II-level text. By Grade V, the figure was 44.8 per cent in government schools, compared with 59.3 per cent in private schools. Only 27.6 per cent of Grade III government-school children could do a subtraction problem; just 30.7 per cent of all Grade V children could solve basic division, rising to 45.8 per cent in Grade VIII.The adolescent picture is more damaging. ASER's 2023 Beyond Basics survey of rural youth aged 14-18 found that only 43.3 per cent could correctly solve a three-digit-by-one-digit division problem. About one in four could not fluently read a Grade II-level text in the regional language. Only 57.3 per cent could read simple English sentences and, among those, 73.5 per cent could explain their meaning. Digital access is also being mistaken for digital capability: 82.2 per cent of 14-16-year-olds knew how to use a smartphone, but only 57 per cent had used one for education in the previous week, while 76 per cent had used one for social media. A young person may navigate a video feed and still be unable to verify a source, fill an online form, protect a password, read a spreadsheet or question an AI answer.The Karnataka evidence cited in the accompanying Counterview report is a warning even in a state associated with technology. Across a 30-district study, 32.7 per cent of Grade I children could not recognise letters, 39.8 per cent could not read words and only about 34 per cent of Grade V children could read at Grade II level. The report also points to roughly 43,000 teacher vacancies and more than 6,150 single-teacher schools. The problem is therefore not only the number of posts. A teacher who has not been prepared for early reading, level-based instruction, practical mathematics, multilingual pedagogy, digital safety or AI ethics cannot acquire those capacities merely because a new online module has been uploaded.  NEP 2020 is written in the future tense. The National Education Policy 2020 imagines a 5+3+3+4 structure, foundational literacy and numeracy, early learning in the home or local language, less rote learning, competency-based assessment, subject flexibility, arts and physical education, vocational exposure from the middle grades, digital learning, inclusion, school complexes and stronger teachers. It expects a learner who can think, communicate, collaborate, solve problems and continue learning. NIPUN Bharat turned the foundational promise into a national mission, with Grade III as the target for basic reading, writing and numeracy. That 2025 deadline has passed, while the learning gap remains.The distance between policy and classroom is not a philosophical disagreement. It is a supply-chain failure. NEP needs time, subject teachers, school leadership, libraries, laboratories, transport, technology, health support and a professional culture that protects teaching. Rural schools too often receive the curriculum as a PDF and reform as a compliance form. They are asked to teach English, mathematics, digital skills and now AI literacy without the staff, equipment and training needed to do so. NEP also refuses the old academic-vocational hierarchy: a rural child should be able to learn algebra and understand a water pump, English and food processing, science and the local craft economy. Too many schools currently provide neither strong foundations nor credible practical pathways.  NITI Aayog's mirror: a chain of small failures. NITI Aayog's May 2026 report, School Education System in India: Temporal Analysis and Policy Roadmap for Quality Enhancement, draws on UDISE+ data from 2014-15 to 2024-25, PARAKH 2024, National Achievement Survey evidence and ASER 2024. Its central value is that it does not reduce the crisis to one statistic. India now has about 14.71 lakh schools serving more than 24.69 crore students, and primary access is close to universal, but higher-secondary gross enrolment is only 58.4 per cent. Government schools' share of enrolment fell from 54.3 per cent to 49.25 per cent over the decade, while private unaided schools rose from 31.7 per cent to 38.8 per cent. The shift reflects demography, migration, consolidation, data cleaning and family choice, but it also signals a weakening public contract.More than one-third of schools have fewer than 50 students. NITI records 1,04,125 single-teacher schools serving 33,76,769 pupils. A national pupil-teacher ratio can therefore look comfortable while a remote teacher is handling several grades, records, meals and surveys. Secondary dropout stood at 11.5 per cent in 2024-25, driven by cost, distance, migration, early work, early marriage, weak foundations and the belief that more schooling will not change a family's income.Infrastructure has improved, but administrative availability is not daily functionality. Functional girls' toilets rose from 85.17 per cent in 2014-15 to a reported 94 per cent in 2024-25, yet 98,592 schools still lacked one; 61,540 had no usable toilet, 14,505 lacked functional drinking water and 59,829 lacked handwashing facilities. Electricity reached 91.9 per cent, but 1.19 lakh schools still lacked functional electricity. Computers were reported in 64.7 per cent of schools, internet in 63.5 per cent and smart classrooms in only 30.6 per cent. PARAKH 2024 showed a national Grade IX pattern of 54 per cent in language, 37 per cent in mathematics, 40 per cent in science and 40 per cent in social science. Inclusion is equally uneven: ramps were reported in 79.1 per cent of schools, while only 33.4 per cent had functional toilets for children with special needs.NITI's diagnosis forms a chain: fragmented schools make staffing difficult; weak staffing produces weak learning; weak learning pushes families towards private options or out of school; falling enrolment then justifies further consolidation. Its answer is connected school complexes, functional infrastructure, shared teachers and facilities, mastery-based pedagogy, welfare support, portable records for migrant children, local accountability, relevant vocational pathways and technology that serves judgement. Each recommendation needs an owner, deadline, public dashboard and consequence when the water, teacher or lesson does not arrive.  Ninety-four thousand doors and the danger of a spreadsheet solution. Between 2014-15 and 2024-25, the UDISE series shows government schools falling from 11.07 lakh to 10.13 lakh. Total school enrolment fell from 26.95 crore to 24.69 crore, while private schools rose broadly from 2.88 lakh to 3.39 lakh. The arithmetic is real, but the headline '94,000 schools closed' does not explain how many were merged, reclassified, cleaned from inactive records or genuinely shut. India has a falling fertility rate, migration and urbanisation. A smaller school-age population will eventually change the network. Yet demography cannot explain away the loss of trust if government schools were consistently useful, safe and aspirational.A well-funded composite school can offer subject teachers, a library, laboratory, sports, counselling and skills that a tiny single-teacher school cannot. But 'within five to ten kilometres' is not a neutral phrase in a mountain village, floodplain, forest or tribal settlement. It means a road, river, monsoon, unsafe stretch, missing bus and a parent who cannot leave work to escort a child. Girls and children with disabilities pay the highest price. Every merger must therefore be tested against travel time, safety, seasonal access, transport cost, attendance, learning and equity. Consolidation should be a service upgrade, never a budget cut or abandonment disguised as rationalisation.  Why families are voting with their feet. Parents do not need a national report to know that a child is behind. They see a paragraph copied without understanding, change counted incorrectly at a market stall, a teacher managing several grades and election duty, and a private school promising English, tests, uniforms, transport and a future. Even when a private school is not objectively stronger, it signals seriousness. The falling government share is not simply a story of affluent families leaving; it is the aspiration of small farmers, construction workers, migrants and landless labourers for children who can read a bank message, compare prices, understand a loan, use a government portal, speak to a customer, migrate safely or build a local enterprise.Quality must therefore mean visible powers: reading a medicine label, calculating a wage, writing an application, understanding a map, identifying a scam, repairing something, growing or selling something and finding the next course. The answer is not a coaching centre or an artificial English accent. It is strong foundations linked to real use: local-language learning, English as a bridge, mathematics through markets and farms, science through water and soil, digital skills through public services and livelihoods, and clear pathways to higher study, apprenticeships and enterprise. Trust returns through repeated visible acts - a clean toilet, a present teacher, a reliable meal, a child who reads better this month, and a parent who can see what the school received and spent.  When the camera enters the school. In August 2026, the youth movement known as the Cockroach Janata Party, or CJP, launched School Thik Karo - Fix the Schools. Its volunteers entered government schools, recorded conditions and published what they saw. The checklist was basic: drinking water and functional toilets; electricity and usable classrooms; boundary walls and campus safety; midday meals and teacher attendance. The visual force of the campaign mattered because a dashboard can say 'infrastructure available' while a phone video shows a broken roof, a clogged toilet, missing windows, children without benches or a class in a borrowed shed. Reports placed such exposures across Madhya Pradesh, Mizoram, Uttarakhand, Bihar, Karnataka, Rajasthan and West Bengal. In Rajasthan, a school in Rampura Kanwarpura was reported to be functioning in a buffalo shed; later reports said the unsafe structure was demolished and a new building of about Rs 18 lakh announced.The campaign also showed how quickly school scrutiny becomes political conflict. In Bankura, West Bengal, CJP volunteer Abdul Hafeez reportedly suffered an attack along with his father, who died two days later from injuries, according to an Al Jazeera account; competing claims about political responsibility remain subject to due process. In Latur, Maharashtra, an FIR was reported against organiser Abhijeet Dipke and others after a teacher alleged unauthorised entry, filming, questioning of students and threats; CJP disputed the account. A Rajasthan team also reported an attack, while a Hingoli headmaster was reportedly suspended after complaints of intoxication and neglect. These allegations require investigation, not headline conviction.Government responses included reported restrictions in Rajasthan on outsider visits, photography, videography and interviews. Maharashtra Chief Minister Devendra Fadnavis dismissed the campaign as a political programme and said most Zilla Parishad schools were good. CJP exposures are not a representative sample, cannot measure learning and cannot replace trained inspections or social audits. But they reveal an accountability weakness. The answer is neither mob inspection nor official secrecy: it is lawful citizen access, child protection, independent audits, transparent school-level records and consequences for failure. Most teachers work under difficult conditions and should not be collectively demonised. Yet a public school must not function as a head teacher's fiefdom.  Money is moving. Trust is not. The Union's 2026-27 budget places total Ministry of Education outlay at about Rs 1,39,289 crore, including roughly Rs 83,562 crore for school education. It lists Rs 42,100 crore for Samagra Shiksha, Rs 12,749.99 crore for PM POSHAN, Rs 7,500 crore for PM SHRI and Rs 3,200 crore for Atal Tinkering Labs. Rajasthan has budgeted Rs 550 crore to repair more than 2,500 schools, Rs 1,000 crore for 400 CM-RISE schools, AI learning labs in 1,000 schools and a School on Wheels in each district, alongside a reported larger infrastructure plan. West Bengal cleared an ADB-backed project of about Rs 2,349.78 crore for roughly 430-432 schools, including classrooms, laboratories, libraries, ramps, toilets, kitchens and teacher development.The scale is welcome, but a model school in a project boundary does not repair every small primary school outside it. NITI notes that public education spending has remained around four per cent of GDP in recent years and records 4.6 per cent in 2021, below the six per cent aspiration associated with the Kothari Commission and NEP 2020. The issue is not only to spend more. It is to weight money towards remoteness, poverty, tribal and migrant populations and disability; release it predictably; ring-fence maintenance; publish its use; and protect teachers from non-teaching work. The real budget test is not a sanctioned amount but a functional service in the village.  The exceptions expose the rule. Kotlapur in Karnataka shows that the public system can revive. Its government school had effectively shut down in 2008 as parents moved children to a nearby private school. When headmaster Dr Vijaya Kumar arrived in 2025, he painted walls, built a Kannada language laboratory and small library, went door-to-door, explained entitlements and rebuilt the school's social presence. The village contributed about Rs 65,000 for CCTV. A fixed deposit of Rs 1,000 a year was created for each Grade I child, to mature after 18 years. Uniforms, books, shoes, socks and eggs made the promise visible. By 2025-26, reported enrolment had reached 42 with four teachers, supported by a School Management Committee.Kotlapur proves both possibility and indictment. Leadership, parent partnership and a visibly better school can restore trust; it is unacceptable that ordinary functionality should depend on a heroic headmaster, donations and personal ingenuity. Kerala's public investment and foundational culture, Tamil Nadu's mother-tongue and welfare emphasis, Himachal Pradesh's access in difficult terrain, Punjab's recent learning gains and community-linked models in Nagaland offer mechanisms worth adapting. The aim is not to copy a state wholesale but to identify what worked and fund it until it becomes routine.The rural school should connect the village to itself and the world. District skill maps can link schools with ITIs, Krishi Vigyan Kendras, self-help groups, cooperatives and practitioners in agriculture, food processing, repair, craft, energy, health, climate, logistics, bookkeeping and digital services. A paid practitioner may mentor a 30-60-hour module, but the teacher must convert experience into language, mathematics, science, design and reflection. Measuring a field, calculating yield, writing an invoice, checking an online payment or verifying an AI answer makes English, mathematics, science, civics and AI literacy useful. Vocational learning must not become caste or class tracking; every module needs bridges to higher study, ITI, polytechnic, apprenticeship, university and enterprise. Five international reminders, not five imports.  China shows the strength and risk of consolidation: better-resourced rural centres, shared expertise, digital links and a nutrition programme reported to benefit more than 37 million students. India can borrow the network logic only with transport, boarding and family contact. South Africa funds poorer schools more through its quintile model and combines no-fee access with nutrition committees. Brazil links social protection to education, redistributes funding through Fundeb and directs at least 30 per cent of federal school-feeding resources to family farming - a cue for deeper local procurement under PM POSHAN.Indonesia's school operational assistance model shows the value of predictable, flexible funds for broken taps, learning materials and connectivity, paired with public ledgers and audits. Finland combines serious teacher preparation with free materials, a daily meal, welfare services and transport when the journey is long or dangerous. India cannot transplant these systems, but it can borrow their principles: weighted equity, local flexibility with transparency, respected teachers, early intervention and the removal of food, health, transport and safety barriers. Ten non-negotiables for a different rural school by 2030.  Functional school guarantee. Every government school should have safe classrooms, drinking water, separate usable toilets, handwashing, electricity, a kitchen, basic furniture, accessibility, a library corner, play space and a maintenance calendar. Dashboards must report monthly functionality, not one-time availability.Rural teacher guarantee. Where there are multiple grades, provide at least two trained primary teachers and named access through a school complex to mathematics, science, English, languages, arts, physical education and vocational learning. Fill vacancies, offer hardship incentives and protect instructional time.Mastery before promotion. Test reading, writing and numeracy at the start of every year, group support by learning level, provide stigma-free catch-up and continue foundational support after Grade III. Assessment must change teaching, not punish children.English and mathematics for use. Build bilingual English around markets, health, work, migration, public services and digital communication. Teach mathematics through money, measurement, time, data, estimation, geometry and reasoning before abstract procedures become meaningless.Human-centred digital and AI literacy. Put power, connectivity, shared devices, offline content and teacher preparation before smart-classroom branding. Teach source checking, privacy, cyber safety, bias, copyright and verification. Children must use tools without surrendering judgement.Consolidate resources without abandoning habitations. Approve mergers only after testing travel, safety, monsoon access, disability access, girls' safety, cost, attendance and learning. Provide buses, bicycles, escorts or hostels when a child must travel.A local multiple-skills curriculum. Offer 30-60-hour modules in agriculture, water, food, repair, craft, energy, health, digital services, climate and enterprise. Pay and train practitioners, award portable credits and keep every academic route open.Nutrition, health and dignity. Strengthen PM POSHAN kitchens, local procurement, menus and social audits. Link schools to health screening, menstrual hygiene, counselling, disability support, physical education and mental-health referral. Track meals served, not meals sanctioned.Open governance and safe scrutiny. Train School Management Committees, give them usable budgets and publish staffing, attendance, facilities, meals, grants, repairs and learning progress without exposing children. Provide lawful observation and protected complaint channels.Weighted finance, leadership and proof. Fund remote, poor, tribal, migrant and disability-heavy schools more per child; release maintenance money predictably; train head teachers as instructional leaders; and publish a rural scorecard based on what children can do, not only what schools possess.  The 2030 test is brutally simple. By 2030, India should answer a child's question without hiding behind enrolment. Can she read a new text and explain it? Can he divide, estimate, measure and reason? Can they use English and a device to learn without losing the strength of their home language? Can they ask whether an AI answer is true, fair and safe? Can they learn a local skill without being sentenced to a caste or occupation? Can they stay through adolescence because transport, food, toilets, health and hope are present?A private tuition market can sell English, a phone can deliver a video and a skill centre can teach a machine. Only a strong public school can combine knowledge, citizenship, nutrition, dignity, peer life, local belonging and a route to the wider world for every child, including the child whose parents cannot pay. The problem is not that rural India has too many public schools. It is that too many have been left with too little capability to justify the faith placed in them. Closing a school may reduce an administrative line; rebuilding it can change a family's trajectory. Kotlapur shows the possible future, CJP shows the cost of leaving the present untouched, and NITI provides the architecture. The remaining requirement is political courage: let citizens see, make teachers capable and respected, fund the last mile and judge the system by the power it gives a child. #RuralEducation, #GovernmentSchools, #EducationInIndia, #RuralIndia, #EducationReform, #NEP2020, #NIPUNBharat, #FoundationalLearning, #EducationEquity, #DigitalLiteracy, #AILiteracy, #VocationalEducation, #PublicEducation, #SchoolInfrastructure, #TeacherShortage, #Education2030, #InclusiveEducation, #CommunityEngagement, #SocialImpact, #SustainableDevelopment ...Read more

08 Sep 2026

Climate justice cannot be separated from workers’ rights. As decarbonisation, climate change and digitalisation reshape jobs and industries, a truly sustainable transition must protect livelihoods, strengthen social dialogue and ensure decent, inclusive work. SummaryThe climate crisis is already reshaping workplaces through extreme heat, disasters, job losses and disruptions across industries, particularly in the Global South. At the same time, the shift away from fossil fuels, alongside digitalisation and automation, is changing both the number and nature of jobs, creating new challenges for workers and trade unions. The article argues that treating environmental goals and workers’ rights as separate issues creates a false conflict between jobs and climate action. A Just Transition must instead place workers and affected communities at the centre through collective bargaining, social dialogue, social protection, reskilling and gender equality. Examples such as heat agreements in Cambodia and worker-focused planning around offshore wind demonstrate how climate action and livelihood protection can work together. Ultimately, integrating labour and environmental governance is essential to ensure that the transition is not merely green, but genuinely just and inclusive. The climate crisis is no longer a distant threat. It is changing the world of work in real time - reshaping economies and workplaces. Heatwaves, floods, storms are disrupting work and industries, while entire communities tied to fossil fuel industries face decline as economies decarbonise. Countries in the global south are more prone to climate change induced disasters¹ and as such industries and workers here are more affected than others. Heavy flooding seriously affected industrial production in many Asian countries including 0Bangladesh, parts of Pakistan and India, Cambodia, Myanmar, Thailand, Vietnam, Sri Lanka and China in 2023-24, particularly in the garment sector². This led to job losses as well as loss of wages for several hundreds of workers, a large number of whom are women. Heat stress is affecting workers at an unprecedented level. A 2024 report of the International Labour Organisation (ILO, 2024)³ estimated that 18,970 deaths and 22.85 million occupational injuries were attributable to excessive heat every year, with about 71% of the global workforce being exposed to excessive heat. Workers working outdoors in agriculture, construction, transport etc., bear the brunt of the heat as do workers in poorly ventilated workplaces such as foundries or even garment factories. Climate change mitigation and adaptation efforts are therefore necessary and the need is immediate, all the more so as the interests of working people are aligned with the success of climate change mitigation strategies. Governments are in the process of implementing policies to reduce greenhouse gas emissions and move away from fossil fuels. However, the movement from fossil fuel to renewable energy has meant loss of jobs, in sectors such as coal and oil and increased informalisation of jobs that used to be permanent jobs. Job losses, especially in unionised sectors have made trade unions wary of climate change mitigation measures. Renewable energy such as solar and wind power energy, is gaining traction, even as coal is continued to be used. China, USA and India are among the top ten solar and wind energy producing countries. They are also among the top ten coal producing countries with China and India leading. Which means that the top coal producing countries are building the resources to produce more renewable energy. But, the number of jobs in these sectors is estimated to be far less than in the traditional energy sectors such as coal and oil. Most of the jobs are precarious, and are still non-unionised. For workers and unions, decarbonisation of the economy is an additional challenge as it has affected employment both in numbers and in nature. The logical sequitur is that workers’ rights should be considered central to climate change governance – both adaptation and mitigation strategies, as workers’ jobs are being lost and as workers’ face extreme heat stress and other effects of climate change. However, this is not always the case. Compartmentalization of workers’ rights and climate justice Climate change is treated primarily as an environmental challenge, even though workers and people in general are affected by it. Climate governance frameworks, whether policy, law, or corporate guidelines, treat environmental goals as completely separate from workers’ rights. The recent advisory opinion of the International Court of Justice (ICJ) is a case in point. The ICJ issued a unanimous Advisory Opinion⁴ affirming governments’ binding obligations under international law to combat climate change through measures that limit greenhouse gas emissions and foster international cooperation, to achieve the objectives of their nationally determined contributions. Although the Court recognised the binding nature of the Paris Agreement⁵ alongside the International Covenant on Economic, Social and Cultural Rights and the International Covenant on Civil and Political Rights, it notably omitted explicit reference to workers’ rights. The omission is significant because the Paris Agreement in its Preamble itself affirms “the imperative of a just transition of the workforce and the creation of decent work and quality jobs”⁶. The ICJ’s opinion in omitting workers’ rights follows a trend in climate governance - compartmentalisation between labour rights and climate change mitigation and adaptation measures. Government policies as well as guidelines of Intergovernmental organisations such as Organisation for Economic Cooperation and Development (OECD) follow the same trend. The Paris Agreement follows the International Labour Organisation (ILO) Guidelines⁷ for a ‘just transition towards environmentally sustainable economies and societies for all’ which identified the importance of social dialogue, social protection, fundamental principles of rights at work and gender specific policies for achieving just transition. Just transition is broadly understood to mean promoting environmentally sustainable economies in a way that is fair and inclusive to everyone concerned – workers, enterprises and communities – by creating decent work opportunities and leaving no one behind. However, government policy frameworks for climate change mitigation which are formulated as a consequence of governments’ obligations under the Paris Agreement are drawn up with little or no inputs from trade unions. In Chile, which has taken its climate change mitigation obligations seriously, it needed a Supreme Court judgement to ensure consultation with affected workers in the closure of a coal powered thermo electric power plant. In the case of Company Workers Union of Maritima Commercial Somarco Ltd. and others vs. Ministry of Energy⁸, the obligation of governments to ensure just transition was recognised by the Supreme Court. It was held that agreements adopted by the State of Chile to achieve carbon neutrality require a just transition strategy both for the workers harmed by the loss of their direct and indirect source of employment and for the communities affected by the loss of services linked to the development of the declining thermoelectric activity. The ruling ordered the government authorities to implement a plan for the workers affected by the decarbonization process, consulting them in that process. The 2023 update of the OECD Guidelines for Multinational Enterprises on Responsible Business Conduct⁹ includes ‘recommendations for enterprises to align with internationally agreed goals on climate change and biodiversity’ and ‘recommendations on how enterprises are expected to conduct due diligence on impacts and business relationships related to the use of their products and services’. The recommendations on climate change do not specifically mention workers’ rights except in the context of training in environment, health and safety, and hazardous waste. This compartmentalisation is also seen in policy frameworks on human rights due diligence¹⁰, where climate change mitigation and adaptation has assumed greater importance. Most of these laws and guidelines have clauses on workers’ rights and environment/ climate issues, which remain isolated from each other. Labour rights and environmental standards are treated as being in separate silos. 1. Asia and the small island nations in the Pacific are affected more than Europe/ N America. See https://wmo.int/news/media-centre/climate-change-and-extreme-weather-impacts-hit-asia-hard .Since Asia is the hub of garment production, this industry was affected disproportionately in 2023-24. 2. ILO, The Heat is On: How heat stress impacts the apparel industry, jobs, and worker health, Geneva: International Labour Office, 2025. 3. Flouris, A., Azzi, M., Graczyk, H., Nafradi, B., and Scott, N., eds. 2024. Heat at Work: Implications for Safety and Health. A Global Review of the Science, Policy and Practice. International Labour Office, Geneva, 2024. 4. Obligations of States in respect of Climate Change (Advisory Opinion) [2025] ICJ Rep. 5. The Paris Agreement is a legally binding international treaty on climate change. It was adopted at the UN Climate Change Conference (COP21) in Paris, France, on 12 December 2015 and entered into force on 4 November 2016. Its overarching goal is to hold the increase in the global average temperature to well below 2°C above pre-industrial levels and pursue efforts “to limit the temperature increase to 1.5°C above pre-industrial levels. See more here - https://unfccc.int/sites/default/files/english_paris_agreement.pdf 6. Ibid. 7. International Labour Organization, Guidelines for a Just Transition towards Environmentally Sustainable Economies and Societies for All (ILO 2015). 8. https://climatecasechart.com/non-us-case/company-workers-union-of-maritima-commercial-somarco-limited-and-others-with-ministry-of-energy 9. Organisation for Economic Co-operation and Development, OECD Guidelines for Multinational Enterprises on Responsible Business Conduct (OECD 2023). 10. There is an increasing number of human rights due diligence (HRDD) law and policy frameworks such as the OECD Guidelines for Multinational Enterprises on Responsible Business Conduct, the European Union’s Corporate Sustainability Due Diligence Directive, the German and French laws on corporate due diligence which are meant to deal with responsibilities of multinational corporations in their supply chains across the world. Decarbonisation and digitalisation: a double disruption This compartmentalisation risks creating a narrative that there is an apparent contradiction between measures to mitigate climate change and the rights of workers; that advancing climate justice would necessitate sacrificing secure employment or organised labour power. This is a wrong narrative. There is only one planet on which both jobs and the environment exist, and because there’s no economy, and no work, on a dead planet. The climate crisis has coincided with major advances in technology, and the world of work is facing challenges brought forth by decarbonisation and digitalisation. Workplaces are changing with the introduction of newer technologies both because of advances in technology and by the need to decarbonise the economy. The changes are far more rapid than we have seen in the past, and the effect is felt in several sectors. Technology change is not new. Technology has always changed the way industries function and therefore the way that workers have worked. The first three industrial revolutions changed manufacturing processes. The first industrial revolution transformed work with the advent of mechanization and steam power. This was also the era of child labour, forced labour and unsafe workplaces, and no workers’ rights. The second industrial revolution with greater use of electricity and mass production saw the beginnings of organized labour and trade unions across the world with workers’ rights being recognized, if not implemented everywhere. Labour laws which recognized workers’ rights, provided at least a way for trade unions to collectively bargain. The third industrial revolution with increased automation and the use of robots that changed the factory floor in a very visible manner. This phase also saw the beginnings of supply chains and weakening of workers’ rights. Trade unions were actively opposing the introduction of computers, but without much success. With the change in technology, the nature as well as number of jobs changed. In Industry 4.0 or the fourth industrial revolution which involves digitization and the deployment of cyber physical systems, the transition is in conjunction with greater automation. More sophisticated robots that require little to no human interaction are already in use in automotive factories. The automotive sector exemplifies this double disruption. The transition from internal combustion engines to electric vehicles is decarbonisation-driven. But it also coincides with automation, robotics, and digitalisation. Workers are losing jobs, the remaining jobs are changing¹¹ and companies want to rescind from their collective bargaining agreements, as in the case of Volkswagen in Europe.¹² Trade unions in Bosch in India report that new ‘high-tech’ units are being set up without consulting existing unions, employing qualified engineers and changing the nature of the job from blue collar to white collar¹³. Just Transition The Just Transition Guidelines of the ILO have as far back as 2015 articulated that sustainability and justice can and should go together. ILO’s Just Transition Guidelines identified the importance of social dialogue, social protection, fundamental principles of rights at work and gender specific policies for achieving just transition. An understanding of Just Transition and its principles is thus key to understanding that the binary of jobs versus environment is a false one. An effective implementation of the fundamental principles of rights at work particularly, freedom of association and the right to collective bargaining will ensure the full participation of workers and their unions, taking into account their priorities. This would require employers/ companies to discuss with unions what changes are coming and how it would affect the workforce. It may mean that workers’ would need to be reskilled (to do a different job) or upskilled (e.g., acquiring new skills) as needed. Unions should be able to negotiate and collectively bargain work re-organisation. This underlines the importance of both collective bargaining and social dialogue, with a focus on unions being provided information by employers and governments about the impending and planned changes of work and work organisation in the workplace. The role of governments in ensuring that the ILO’s fundamental principles of rights at work¹⁴ becomes crucial. 11. The future of work in the automotive industry, Technical meeting on the future of work in the automotive industry (Geneva, 15–19 February 2021), Note on the proceedings, International Labour Office, Sectoral Policies Department, Geneva, ILO, 2021. 12. https://www.bbc.com/news/articles/cje9kv3q94po - Previously agreed wage increases were cancelled. An agreement between the company and the union was made for ‘cutting’ 35000 jobs by 2030. 13. Discussions with Bosch India unions in Pune and Bangalore (October – November 2022). 14. The ILO’s fundamental principles of rights at work do not require ratification of specific conventions. All countries are bound by the fundamental principles by virtue of their membership in the ILO. Making transitions ‘Just’ Trade unions are learning to deal with these challenges and are putting forward demands in order to protect workers from effects of climate change as well as digitalization. We are beginning to see examples of unions negotiating effects of climate change. The ‘Heat Agreements’ in garment factories in Cambodia¹⁵ is one such example. According to these agreements, which have been negotiated between unions and employers, if the temperature inside the factory rises above 35 C, cooling systems need to be turned on, and workers can take 5-10 minutes break. This is a very concrete example of collective bargaining being used to adapt to climate change. Another inspiring example is the successful campaign in Maine, USA where an offshore wind energy farm was built further away from the shore so that the livelihoods of the local fishing community could be protected¹⁶. This is a situation which could easily have been posited as workers vs. environmental groups vs. local communities. However, the importance of climate mitigation as well as the need to protect livelihoods were both prioritized and the wind farm was commissioned further away from the shore, while including collectively bargained wages for the workers employed on the wind farm. The importance of collective bargaining in protecting workers from the effects of climate change as well as the adaptation/ mitigation measures that governments are undertaking cannot be overstated. However, these examples are too few, with concrete clauses protecting workers’ rights, not very prevalent. The recent ILO Working paper on the role of collective bargaining on promoting just transitions¹⁷ (Schmidt and Braga, 2025) analyses 512 collective bargaining agreements (CBAs) to understand the presence and scope of clauses on Just Transition. While 58 of the agreements had clauses on just transition, most of them were declarative clauses and only 12 were more of a transformative nature. Topics in the agreements included hybrid work (aimed at reducing carbon footprint), working time organisation for extreme heat and upskilling of workers and managers. In addition, the Working Paper looked at six case studies in detail, outside of the 512 CBAs, and identified that the key topics were workers’ representation, planning for job changes and skill development, education and environmental management. These issues, particularly workers’ representation, planning for job changes and skill development are very much part of the Just Transition Guidelines. The ILO’s Just Transition guidelines are clear: climate adaptation and mitigation measures must go hand-in-hand with decent work, social dialogue, gender equality, and social protection. Just transition would mean promoting environmentally sustainable economies in a way that is fair and inclusive to everyone concerned – workers, enterprises and communities – by creating decent work opportunities and leaving no one behind. Done right, it’s a roadmap. There needs to be a renewed commitment to the ILO’s Just Transition Principles, particularly from employers and governments. Collective bargaining and social dialogue must be institutionalized with trade unions and affected communities being part of the drafting of climate strategies and plans. A robust social protection policy including health insurance, income support and retraining for workers is needed with the government playing a strong role, making sure that employers contribute their share. Just Transition would also mean that all workers are considered equal, for nothing can be ‘just’ without the element of gender justice. Women workers, who are typically not considered qualified for jobs that involve ‘high technology’ would need to be active participants. This requires a policy framework that includes work in the informal sectors, as well as low-waged manufacturing and services sectors where women are disproportionately concentrated. A Just Transition must dismantle these barriers, ensuring women access training and employment in green and digitalised economies. Without gender equity, no transition can be truly just. In addition, digital – driven technology requires extensive mining of minerals. This too needs to be approached within a framework of Just Transition, embedding workers’ rights and rights of communities into all policy decisions. 15. Heat Agreements in Cambodia: An interview with Somalay So and Joe Buckley, The Global Labour Rights Reporter, Vol. IV, Issue 1, 2025, p. 17-21. 16. Deedee Fitzpatrick and Hannah Sachs, “Labour leading on climate: advancing high-quality unions jobs in the emerging U.S. clean energy sector” in A Just Transition Law for Climate Justice, The Global Labour Rights Reporter, Vol. IV, Issue 1, 2025, pp 58-66. 17. Schmidt, V., Braga, C. The role of collective bargaining in promoting just transitions. ILO Working Paper 145. Geneva: International Labour International Labour Office, 2025. Conclusion How technology is applied and who benefits from it will determine whether the changes in the world of work is a Just Transition or only a green transition. The tools for a fairer future already exist in unions and in collective agreements. Integrating environmental and labour governance will materialise the idea that justice and sustainability can, and must, go hand in hand. References Flouris, A., Azzi, M., Graczyk, H., Nafradi, B., and Scott, N., eds. 2024. Heat at Work: Implications for Safety and Health. A Global Review of the Science, Policy and Practice. International Labour Office, Geneva, 2024.ILO, The Heat is On: How heat stress impacts the apparel industry, jobs, and worker health, Geneva: International Labour Office, 2025.Deedee Fitzpatrick and Hannah Sachs, “Labour leading on climate: advancing high-quality unions jobs in the emerging U.S. clean energy sector” in A Just Transition Law for Climate Justice, The Global Labour Rights Reporter, Vol. IV, Issue 1, 2025 available here: The Global Labour Rights Reporter - ILAW Network.Schmidt, V., Braga, C. The role of collective bargaining in promoting just transitions. ILO Working Paper 145. Geneva: ILO Working Paper 145. Geneva: International Labour Office, 2025.  ABOUT AUTHOR   Apoorva Kaiwar is a women’s and workers’ rights activist ...Read more