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About the role We are seeking a full-time Post Doctoral Research Assistant to join the Oxford Particles Research Group at the Department of Engineering Science (based at the Osney Thermofluids
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, understanding and manipulating interactions between charged particles and molecules in solution (Nature 2010, Nature Nanotech 2012, 2015, 2017, 2024). Recently the lab’s work has shed much needed light on
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project will likely use a combination of single particle cryoEM, cryoET, and X-ray crystallography, you should be an expert in at least one of those techniques and keen to learn the others. You also should
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About the role We are seeking a full-time Project Engineer to join the Oxford Particles Research Group at the Department of Engineering Science (based at the Osney Thermofluids Institute
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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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, and single-particle cryo-electron microscopy (cryo-EM) to investigate membrane protein complexes involved in lipid transfer and modification. You will be expected to take an active role in experimental
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of structural biology and cell biology, applying techniques such as mammalian protein expression, protein purification, and single-particle cryo-electron microscopy (cryo-EM) to investigate G protein coupled
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vaccine candidates will be expressed using the most suitable vaccine platforms such as viral vector vaccines, recombinant proteins, virus-like particles (VLP), or mRNA. You will assist with the assessment
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, virus-like particles (VLP), or mRNA. You will assist with the assessment of vaccine candidates for their safety and immunogenicity preclinically in vitro. You will be highly motivated, preferably with
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found in Inertial Confinement Fusion (ICF) implosions transport of charged particles is a challenging problem that is difficult to simulate as well as diagnose in experiments. For example, particle