Climate Change made devastating early heat in India and Pakistan 30 times more likely Climate change likely increased extreme monsoon rainfall, flooding highly vulnerable communities in Pakistan Attribution of 2022 early-spring heatwave in India and Pakistan to climate change: lessons in assessing vulnerability and preparedness in reducing impacts Hydrologic interpretation of machine learning models for 10-daily streamflow simulation in climate sensitive upper Indus catchments Humid heat exceeds human tolerance limits and causes mass mortality How can event attribution science underpin financial decisions on Loss and Damage? Representing natural climate variability in an event attribution context: Indo-Pakistani heatwave of 2022 Transmission of malaria intensity in changing climate of Pakistan Attribution of Extreme Precipitation and Flooding in Kathmandu Valley: Synoptic Drivers, Climate Change, and Urban Impacts Increasing April-May rainfall, El Niño and high vulnerability behind deadly flooding in Afghanistan, Pakistan and Iran Severe heat waves in Islamabad and its links with global mitigation benchmarks Heavy precipitation hitting vulnerable communities in the UAE and Oman becoming an increasing threat as the climate warms Developing countries need support adapting to deadly heat Emulator-enhanced extreme event attribution for data scarce developing countries The 3rd version of the Climate Vulnerability Monitor: a free online tool providing globally comparable biophysical, macroeconomic and health climate impact information at the national level Four Overshoot Proofing reports for Iconic Regions and Cities The RSA Awards 2023: Spatial Economic Analysis Long term strategies: low carbon growth, resilience and prosperity for Least Developed Countries The Effect of Global Climate Change on Pakistan Climate overshoot implications for local adaptation planning How can overshoot risks be included in long-term adaptation planning? A public database of future heat stress in 140 cities to examine the potential for heat reduction via climate-smart urban development