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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 porous materials of industrial relevance to JM. This proposed project will investigate how the range of low-field magnetic resonance techniques can be expanded, using Fast Field Cycling (FFC) and Electron
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