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decade. This PhD project places you at the forefront of this challenge, developing the tools and insight needed to design the next generation of offshore aquaculture infrastructure. Research Overview
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as anabolic resistance. This study will explore if anabolic resistance is the cause of frailty in ALL survivors in response to diet. The results will guide the design of tailored dietary and exercise
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to design an AI system that integrates scientific knowledge for early dementia modelling, based on large language models and causal inference. The project has two stages: first, to construct a causal
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Join us in the University of Exeter’s Centre for Metamaterials Research & Innovation – the heart of the UK Metamaterials community. You’ll be part of the £20 million EPSRC MetaHUB – the UK’s largest
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humidity ranges. By exploiting advances in materials design, it is possible to tailor ionic transport properties while maintaining structural integrity under demanding electrochemical environments
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hospital-centered to community-based provision (e.g., NHS Mental Health 10 Year Plan, Fit for the Future plan, National Family Hub expansion). Family Hubs and voluntary care sector enterprise (VCSE
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Join us in the University of Exeter’s Centre for Metamaterials Research & Innovation – the heart of the UK Metamaterials community. You’ll be part of the £20 million EPSRC MetaHUB – the UK’s largest
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motor processes. Each project will be designed with our steering group of people with a diagnosis of Parkinson’s. Candidates with a background in neuroscience, clinical sciences or related discipline are
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interests, whether you prefer system-level analysis, control design, simulation-based investigation, or a combination of these. The specific research direction will be developed in collaboration with
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The University of Exeter’s Centre for Metamaterials Research and Innovation (CMRI) with UK Government partner Dstl, is inviting applications for a fully funded PhD studentship. The stipend will be paid