129 developer-"https:" "https:" "https:" "UCL" Postdoctoral positions at University of Oxford
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collaborate with other technical groups working on the design. The successful candidate will also have opportunity to conduct experiments and machine development activities on the existing accelerators. The key
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:00 on Monday 23 February 2026. Interviews will be held as soon as possible thereafter. At the Dunn School we are committed to supporting the professional and career development of our postdocs and
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as soon as possible but must be available to start by 1 April 2026 at the latest. This project aims to develop superconducting microwave interconnects and metasurfaces for distributed quantum networks
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sonochemistry across different reactor scales. We are seeking one highly talented and motivated researcher to exploit our wide range of sonochemical reactors, catalyst developments, and physical and chemical
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challenges, from reducing our carbon emissions to developing vaccines during a pandemic. The Department of Experimental Psychology is a large, internationally recognised department with a high volume of
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months. The project involves developing and applying a novel integrated platform to study the chemical molecular mechanisms and signalling consequences of reactive small-molecule metabolites within
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challenges, from reducing our carbon emissions to developing vaccines during a pandemic. The Department of Experimental Psychology is a large, internationally recognised department with a high volume of
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concept for a linear collider based on a hybrid of radio-frequency and plasma-accelerator technology. This project will focus on developing plasma accelerators towards the high luminosities (via increased
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high-demand protective equipment application. You will be responsible for manufacturing and testing of materials, and development of a model to inform material design. You should possess a PhD in a
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constituents of its microstructure. You will develop inverse-analyses of the in situ imaging experiments to extract the non-linear stress/strain relationships. You will design critical in situ X-ray and neutron