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of the project is to enable a systematic introduction of non-equilibrium effects into computational discovery workflows of relevance in the pharmaceutical and fine chemistry industries. The work will build
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. Pharmaceutical Science, Pharmacy, Chemistry, Biochemistry, Biomedical Science or Biological Science. You must have a high standard undergraduate degree at UK 1st class or 2:1 level (or international equivalent
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Milo Shaffer (www.imperial.ac.uk/nanostructures-and-composites ), an international leader in the chemistry of nanocarbons. Nanoparticle-reinforced lightweight materials with improved physical and
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treatment and MRI contrast agents) and energy materials (e.g. solar cells and battery materials). Synthesising nanomaterial with properties (e.g. size, composition, surface chemistry) well-tuned
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The recent advent of deep learning (DL) has enabled data-driven models, paving the way for the full exploitation of rich image datasets from which physics can be learnt. Here at the University of Greenwich we recently developed a novel data-driven image mechanics (D2 IM) approach that learns...