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agricultural systems (TIFs) across contrasting environmental and agroclimatic contexts. The PhD will address questions about tree–water interactions, including: How does tree morphology and canopy structure
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. This PhD will investigate the mechanisms driving water use by trees in tree-based agricultural systems (TIFs) across contrasting environmental and agroclimatic contexts. The PhD will address questions about
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‑physical environments. Impact and Relevance The proposed research directly addresses challenges faced by industries deploying AI‑enabled CPS in safety‑critical environments such as transportation, energy
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targets across a broad spectrum of mitochondrial diseases. Supervisory Team You will join the internationally recognised Newcastle Mitochondrial Research Group, an interdisciplinary environment spanning
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collaboration with Futamura Ltd , a global leader in sustainable packaging, and you will deliver solutions with sector-wide relevance This is an opportunity to be part of a Leading Research Environment, the EPSRC
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hydrological processes (Schumann and Bates, 2018). Within the UK, operational flood mapping by the Environment Agency combines modelling and observations but still relies heavily on precomputed flood risk maps
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the security robustness, failure modes, and operational risks of AI decision engines in cyber‑physical environments. Impact and Relevance The proposed research directly addresses challenges faced by industries