35 postdoc-finite-element Postdoctoral research jobs at University of Oxford in United Kingdom
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incorporated into cellular function. We are now looking for a postdoc to study the physicochemical properties of membraneless organelles and the links to neurodegenerative disease. The candidate will have
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mentoring junior researchers and collaborate with faculty, DPhil students, and postdocs across engineering, computer science, government, and law disciplines. The role is full time 2 years fixed term
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2025. 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 research staff. To help them
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the CYCLONE team, whilst managing and prioritising elements of an ambitious list of interesting and impactful objectives. This post offers an outstanding opportunity to advance the Research Associate’s
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managing and prioritising elements of an ambitious list of exciting and impactful objectives. This post offers an outstanding opportunity to advance the Research Associate’s career in the area of attribution
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months. The project involves the scale-up of new hierarchical metal oxides and hydroxides and is funded by the UCSF (Oxford University Challenge Seed Fund). Find out more about the O'Hare research and
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the project will focus on developing a thermal water splitting process based on complex transition metal oxides, and then studying the kinetics of the process to facilitate the design of a reactor to integrate
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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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component of the duties. The post is based in the Department of Earth Sciences and will be overseen by Richard Walker in Oxford. The post will also involve close collaboration with scientists throughout COMET
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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