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models, which are essential for understanding climate change impacts. The work involves reviewing existing modeling and model–data fusion techniques, and developing faster, machine-learning–based tools
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Dispersion – Inverse Model (EURAD-IM). The PhD project will be conducted in the atmospheric modeling group of the Institute of Climate and Energy Systems (ICE-3) at Forschungszentrum Jülich and the
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of £20,780 (2025/26 UKRI rate). Additional project costs will also be provided. Overview Climate change is driving more frequent and intense extreme rainfall events, creating serious challenges for flood risk
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unreliable forecasts. Combined sewer overflows are expected to increase in frequency and intensity as climate change drives more extreme rainfall events, further exacerbating the risk of pollution in coastal
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rate). Additional project costs will also be provided. Overview Coastal flooding poses a significant and growing threat to communities worldwide, intensified by climate change and sea-level rise
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to the environmental challenges of climate change in ways that are locally relevant and practical. The primary purpose of the role is to assist with the collection and analysis of qualitative data. The project is
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)equality, wellbeing, climate change, and sustainability. Swansea University’s School of Management has significant strengths in digital innovation, human resources, and enterprise development policy
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on social science aspects of psychology (social, cognitive, developmental, environmental, health, clinical, and forensic) and understanding issues of societal importance/ESRC priorities such as climate change
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a rapidly changing climate. The role of this graduate student will be to determine the effects of increasing water temperatures and wildfirecontaminated spawning habitat on interior Pacific salmon
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Action. We welcome proposals from scholars wishing to develop knowledge and seek change-making applications across these areas of research. Where to apply Website https://www.swansea.ac.uk/postgraduate