86 parallel-processing-bioinformatics Postdoctoral positions at University of Oxford in United Kingdom
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will have three responsibilities: - (1) studies of composite materials for a beam-facing RF shield. (2) contributions to the operation and exploitation of the Timepix4 testbeam. (3) simulation work
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immunogenicity experiments, murine aerosol challenge experiments, administration of vaccines and drugs, monitoring of in vivo, collection and processing of samples, etc. You will be involved in setting up assays
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communication skills, with the ability to write for publication and present research proposals and results. Application Process Applications for this vacancy are to be made online via www.recruit.ox.ac.uk and
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should be an expert in at least one of those techniques and keen to learn the others. You also should have a deep interest in molecular mechanisms underlying biological processes and – if not experience
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migration, nanoscale assembly, or complex charge-screening processes are still poorly understood despite their critical impact on electronic properties and device performance. The project will provide a
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and Culture teams and initiatives work to make the Department of Psychiatry as supportive, welcoming and inclusive as possible. Application Process You will be required to upload a covering letter
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diversity Our active Psychiatry People and Culture teams and initiatives work to make the Department of Psychiatry as supportive, welcoming and inclusive as possible. Application Process You will be required
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for solving problems related to safe robotic exploration and planning under epistemic uncertainty. We typically work with Markov decision processes (MDPs), and are looking for someone with experience in both
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the development and operation of the geo-QDM in the Paleomagnetism Laboratory, University of Oxford. The post holder will be responsible for managing and conducting research and administrative duties regarding
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sustainable alternative to conventional rubbers, thanks to their re-processability, recyclability, and design flexibility. A micromechanical approach will be adopted to link key microstructure parameters (hard