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molecular techniques such as CRISPR/Cas9 editing, retroviral transduction, or transcriptomics Further Information This is a full-time post based at the WIMM, University of Oxford and fixed-term for 1 year in
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We are looking to recruit two enthusiastic and motivated Postdoctoral Research Assistants to join the group of Professor Ervin Fodor in the Sir William Dunn School of Pathology at the University of Oxford. The aim of the project is to gain in-depth molecular insights into how influenza viruses...
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Reporting to the Project Co-Lead, Professor Beth Greenhough, the post holder will be responsible for carrying out research contributing the social science dimensions of the three-year MRC funded
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projects. It is essential that you hold a PhD/DPhil in a quantitative or computer science related subject (e.g. Statistics, Machine Learning, Biostatistics, AI, Engineering), and have post-qualification
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experience, and an enthusiastic interest in the research projects selected. Please see the ‘Job Description’ for the full list of selection criteria. This is a full-time post offered for a fixed-term of three
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rhythms in population health. This post is part of a large, interdisciplinary research programme, offering attractive opportunities to work across conventional boundaries and pursue hypothesis-led science
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loans • Membership to a variety of social and sports clubs The post is available on a flexible hybrid basis. The minimum on-site time is 2 days/week About the Role The post is funded
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how interactions between excitons and other quasiparticles (e.g. phonons) impact the energy, formation and dissociation of excitons at finite temperatures. The main directions of this project will
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the model, its numerical implementation in a finite element code, and its validation against experimental data in collaboration with experimental collaborators. You will also engage with the hub activities
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of semiconducting metal halides, chalcohalides and metal chalcogenides. The unusual properties displayed by many of these materials, including structural flexibility, strongly anharmonic lattice potentials, ionic