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new project with the aim to transform the design of engineering components from one based on selecting a best single material to one in which material properties and compositions are treated as
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Applications are invited for 3.5-year fully funded PhD studentship based in the Department of Chemical Engineering & Biotechnology, University of Cambridge and industry partner Swift Solar
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materials such as lithium ion batteries and fuel cells are prone to degradation by a range of failure mechanisms including swell-induced fatigue and micro-cracking. The apparent toughness may be a function of
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a new project with the aim to transform the design of engineering components from one based on selecting a best single material to one in which material properties and compositions are treated as
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times undesired process changes. Being able to predict the compaction behaviour at different compression speeds, densities and compositions before formulations are transferred to large-scale production
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to develop advanced magnetic resonance imaging tools that: (i) map chemical composition and molecular transport at 100 micron resolution in all 3 spatial dimensions? (ii) spatially map variations in
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Applications are invited for 3.5-year full funded PhD studentship based in the Department of Chemical Engineering & Biotechnology, University of Cambridge and Johnson Matthey (JM) PLC. Previous