118 algorithm-development-"Multiple"-"Prof"-"UNIS"-"St" Postdoctoral positions at University of Oxford
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scientists, forming small teams focused on ambitious, ‘blue sky’ research for novel methods development relevant for drug discovery analysis pipelines, trial design and operational efficiency. Led by Professor
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scientists, forming small teams focused on ambitious, ‘blue sky’ research for novel methods development relevant for drug discovery analysis pipelines, trial design and operational efficiency. Led by Professor
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climate forecasting. The aim of the project is to develop innovative solutions to better understand and correct the SNP, improving climate predictions for the Euro-Atlantic region and beyond. Applicants
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-year, renewable, high-profile research initiative funded by the European Commission, bringing together leading research teams from across the Eurozone to develop state-of-the-art multimodal LLMs. This is
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researchers will extend and apply the ideas of active matter physics in biological contexts, developing theories and cell-scale and continuum computational models. The work will focus on identifying physical
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. The role spans two cutting-edge research projects developing digital tools for faster, smarter battery testing and advanced management systems to enhance battery performance in heavy industry. You’ll develop
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lab has developed the OrthoFinder comparative genomic methods. OrthoFinder has become widely-used in comparative genomics research, it powers many popular databases of online genomic information, and
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the professional and career development of our postdocs and research staff. To help them thrive and achieve their ambitions, we have created a comprehensive range of opportunities and initiatives designed to provide
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advanced imaging and behavioural techniques in mice; and adapt existing and develop new scientific techniques and experimental protocols, with a particular focus on in vivo animal models (mice
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world-leading researchers from Oxford, Harvard, and other premier institutions to develop innovative gene-silencing and gene-editing technologies targeting the underlying causes of genetic heart diseases