141 algorithm-development-"University-of-Surrey" Postdoctoral positions at University of Oxford in United Kingdom
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will employ a multi-disciplinary approach, including protein/nucleic acid biochemistry, bacterial genetics, and phage biology to test and generate hypotheses. You will develop new ideas and approaches
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The post holder will develop computational models of learning processes in cortical networks. The research will employ mathematical modelling and computer simulation to identify synaptic plasticity
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of independently managing a discrete area of a research project and experience of actively collaborating in the development of research articles for publication are desirable, but not essential. The post is fixed
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, operations research, computer science, mathematical finance, or a related field, the successful candidate will demonstrate the ability to develop independent research ideas and contribute to advancing our
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researcher will fabricate and characterize devices, perform low-temperature experiments using radio-frequency readout circuits, and collaborate with theorists to develop novel experiments for studying quantum
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the PI and keep up-to-date knowledge of relevant publications. You will be responsible for adapting existing scientific techniques and experimental protocols and developing new ones, when relevant. In
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challenges, from reducing our carbon emissions to developing vaccines during a pandemic. The Department of Psychiatry is based on the Warneford Hospital site in Oxford – a friendly, welcoming place of work
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of extreme events. New modelling capability will be developed to quantify impacts of extreme events on surface melt of ice shelves. These advances will bring a step change over current knowledge of extremes in
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collaborations will also be forged. The successful applicant will work with researchers in Dr Oswal’s group as well as researchers across the wider BNDU to develop and lead the process of recruiting, safety
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develop photoluminescence and spin control capabilities, under cryogenic conditions, to probe the defects’ electronic structure and spin properties. This effort will be combined with ongoing work in the