120 high-performance-computing-postdoc Postdoctoral research jobs at University of Oxford in Uk
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strong academic performance. You should have extensive experience in molecular biology techniques including PCR, cloning, and site-directed mutagenesis as well as experience in protein biochemistry
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developing a novel platform to uncover the hidden dynamics of proteins in health and disease. Your Role As a postdoc on this project, you will be part of a dynamic team working at the intersection of protein
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of the project. Applicants should hold, or be close to completion of, PhD/DPhil in Biology or a related subject. You should have a high level of competence in cell biology and relevant experience demonstrated by
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settings. We are seeking a highly motivated postdoc to conduct research into this fast-moving area. Directions may include investigating quality evaluation methods for multi-agent systems, attack surfaces
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annum inclusive of Oxford University weighting Potential to under fill at grade 06RS: £34,982-£40,855 per annum inclusive of Oxford University weighting The Department of Computer Science seeks to employ
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and leading a programme of numerical simulations relating to all aspects of our research on P-MoPAs; using particle-in-cell computer codes hosted on local and national high-performance computing
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their seismic signature. Performing Synchrotron X-ray diffraction experiments in the dDAC and taking active part in the group’s other synchrotron experiments is also a critical part of this role. About you You
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nanotubes, enables the exploration of thermodynamic processes at the nanoscale. Carbon nanotubes serve as exceptional nanomechanical resonators due to their low mass, high stiffness, and quality factor
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these bioinformatic experiments. Access to a high-performance computer will be provided. The candidate must be capable of generating complex molecular compound models in silico and using current molecular dynamic
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or a related subject. You should have a high level of competence in cell biology and relevant experience demonstrated by first author publications in high-profile journals. The ideal candidate should