23 postdoc-in-control-systems Postdoctoral positions at DURHAM UNIVERSITY in United Kingdom
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The Department of Physics at Durham University is one of the leading UK Physics departments with an outstanding reputation for excellence in teaching, research and employability of our students
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quantum systems. The use of molecules is motivated by their rich internal structure, combined with the existence of controllable long-range dipole-dipole interactions, long trap lifetimes and strong
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literature review methodologies, and have a good command of research knowledge relevant to Contextual Safeguarding. Research experience, including from their PhD, is essential, however we are open to
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Applications are invited for a Postdoctoral Research Associate. This is to support research on a Leverhulme Research Project awarded to Dr Kim Bouwer, with the title: A study of everyday climate
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. The research project is funded by the BBSRC for three years and is led by Dr Tim Davies. The research will explore the mechanism by which Wnt signalling can promote successful cytokinesis in the early C. elegans
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Applications are invited for a fixed-term full-time Postdoctoral Research Associate position in radar monitoring of natural hazards, beginning around July 2025 (although there is some flexibility in
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for Advanced Intelligent Security Applications. Counterfeiting is extremely detrimental to society. Authenticating products and documents is vital to global commerce, health and personal identity. A plethora of
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The Role A Postdoctoral Research Associate position is available to pursue experimental research in the field of atomic and laser physics within the Durham Quantum Light and Matter group
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The Role Carbon dioxide and sustainability Carbon dioxide is essential for life. It is at the beginning of every life process as a substrate for photosynthesis or chemosynthesis. It is at the end
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on a project funded by the ERC Advanced Grant 'RheoYield'. The position is to commence in September 2025 or as soon as possible thereafter. Its overall aims will be to understand the deformation and flow