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4-year Computational Project to use state-of-the-art Computational Chemistry techniques to understand structure-property relationships in thermal batteries, and to derive new understanding to guide
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underexplored post transition metal oxide chemistries. The structure-property information yielded by this study will allow us to develop design principles for new TCOs with targeted band alignments for a range of
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developing Generation IV nuclear reactors. With the complication of Salts chemistry and the extreme conditions to operate, the material degradation behaviour when the components are subject to mechanical
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This is a fully-funded 3-year position in the School of Chemistry, University of Birmingham, to work on an interdisciplinary project in the group of Dr Gemma-Louise Davies. The project will involve
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to assess cell permeability. We are looking for a highly motivated, creative and enthusiastic candidate with a strong background in chemistry/biochemistry or closely related subjects, who is passionate about
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AHRC Collaborative Doctoral Partnership Applications are invited for a PhD studentship, to be undertaken at Cranfield University (CU, Defence Chemistry Department) and the National Archives (TNA
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chemistry/biochemistry or closely related subjects, who is passionate about working at the interface of chemistry, biology and medicine, and have interest in therapeutics discovery. Opportunities to visit
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suitable for applicants with a high level degree in Physics, Chemistry or Materials Science, ideally with some prior experience in quantum chemistry or solid state electronic structure calculations
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a collaborative network of experts in the field. In this 3.5-year Computational Project you will build a strong foundation in the use of state-of-the-art Computational Chemistry techniques, and you
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development strategies focus on alloy chemistry designs and targeted thermo-mechanical treatments to achieve a fine martensitic microstructure, and even more importantly, to tailor the chemistry, size and