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About the project: Machine learning accelerated Inverse Design of Graphene Nanoribbons for Green Energy Supervisor: Dr Sara Sangtarash, University of Warwick Thermoelectric materials convert heat
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There exists an inherent variability in how lithium-ion batteries fail – an event commonly referred to as “thermal runway”. This uncertainty drives additional cost and complexity into the design and
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intestinal wall, and how. You will design, microfabricate and characterise an actuator that delivers a mechanical stimulus to intestinal tissue with independent control over vibration parameters to exploit
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. Theory and modelling of EIT and four-wave mixing will guide the experiments, alongside group work on nanophotonic design. The student will work across device fabrication, cryogenic QD optics and atomic
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and para-athletes, their coaches and support staff, co-design an evidence-informed nutrition curriculum covering performance, health and culture, and evaluate its impact at group and individual level
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to world class design, fabrication and testing facilities. If you are excited about the unique opportunity to work at the cutting edge of RF to millimetrewave integrated circuit technology you should apply
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on the candidate’s skills and interests, but may include genetically engineering microbes to change form and function, developing theory and AI methods that advance our ability to design reliable, engineered
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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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Primary Supervisor: Dr. Dennis Fitzpatrick Cardiovascular disease remains a major global health challenge and continues to drive innovation in medical technology. Cardiovascular devices form
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Advances in manufacturing science have resulted in unprecedented research and development in the design of ‘micro-swimmers’: microscopic entities that navigate fluid environments by converting some