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based at the Department of Obstetrics and Gynaecology, University of Cambridge. They investigate the mechanisms by which sub-optimal nutrition in early life can affect reproductive ageing, the impact of
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specimens with controlled variations of impurity elements (e.g., Cu, Ni, Sn, Sb, Mo) to assess their impact on microstructure and mechanical properties. The ability to generate thousands of unique
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diffraction, and differential scanning calorimetry Mechanical performance assessment, including small-scale tensile testing and in situ testing at Diamond Light Source The studentship is fully funded for 3.5
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, and performance testing using techniques such as scanning and transmission electron microscopy, diffraction methods (lab-based and synchrotron), mechanical property assessments, and thermo-physical
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duties include producing builds of aluminium and steel alloys using LPBF technology; characterise the build microstructure and mechanical behaviour; and use the knowledge gained to devise novel
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) leverage existing mutant libraries to define molecular mechanisms of influx, efflux, and metabolism, and (iii) use this information to employ in silico screening and generative AI methods to create new
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-scale data'. It is motivated by the recognition that modern data generating mechanisms can be highly complex, and it is often challenging to write down a plausible generative statistical model. We