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operation will be studied to gain insight into their mechanisms and potential mitigation strategies. The successful candidates will use X-ray diffraction techniques to characterise battery materials and so
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involved in studies of cell dynamics and tissue morphogenesis during embryo development using nano-engineering, cellular and molecular approaches. Cell-type transition and tissue property changes widely
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systems FEM multiphysics modelling of electromagnetism (ideally in COMSOL Multiphysics and including superconductors) Design and construction of mechanical systems Cryogenic engineering The candidate should
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Engineering and Biotechnology at the University of Cambridge. Funding is available for a 1 year fixed-termed post in the first instance. The aim of the project is to develop and validate computational models