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science, nonlinear optics, sensing, advanced imaging techniques and numerical modelling. About the role A successful candidate will join the EPSRC funded project “Catalysis meets plasmonics: New
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collaborative programme bringing together a team of leading experts in advanced electron microscopy imaging, first-principles modelling, metal halide semiconductor thin-film and device fabrication, and
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closely the development of quantum technology and modern superconducting device engineering. You will gain experience on high-frequency operation and measurement of superconducting quantum circuits, which
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based on the Warneford Hospital site in Oxford – a friendly, welcoming place of work with an international reputation for excellence. The Department has a substantial research programme, with major
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with an international reputation for excellence. The Department has a substantial research programme, with major funding from Medical Research Council (MRC), Wellcome Trust and National Institute
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of Oxford is a leading centre for biomedical research and education. Our mission is to advance discovery science by reconstructing physiological processes at molecular, cellular, tissue, and systems levels
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during cancer and viral pathogenic processes. The Atherton group is based in Randall Centre for Cell & Molecular Biophysics , home to a diverse array of structural and cellular biology research, which is
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modern superconducting device engineering. You will gain experience on high-frequency operation and measurement of superconducting quantum circuits, which forms the basis of the most promising present
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’ programme grant. Find out more about the research and group at: About you Applicants must hold a PhD in Physical Chemistry or a related area, (or be close to completion) prior to taking up the appointment
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processing software Experience in prokaryotic (E.coli) cell culture Experience in eukaryotic (e.g HEK293T cells and/or insect cell systems) cell culture Experience in basic molecular biology and biochemistry