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for devices containing quantum materials. The project addresses this gap by developing measurement protocols which test the Hamiltonian hypothesis and hence support the materials discovery process. [1] E. Lupo
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: engagement with quantum science and/or quantum computing through projects and/or additional study. Experience with atomic physics or quantum/classical codes would be particularly beneficial. How to apply
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This studentship is fully-funded by an EPSRC Industrial Doctoral Landscape Award in partnership with the National Physical Laboratory. The successful applicant will be welcomed into our world
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investigating key nuclear reactions for both fundamental physics and applications. The aim of the project is to establish new methods to measure neutron-induced reactions for nuclear applications. This will
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models and simulations that deepen the understanding of the underlying physics involved. The ultimate goal is to create predictive, physics-based models that optimise and control pharmaceutical
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The project is in close collaboration with the National Physical Laboratory and benefits from the scientific environment and resources provided by the Centre for Vision, Speech and Signal Processing
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scintillators to X-rays and gamma rays using radioisotopes and X-ray generators. The student will be registered on the Physics PhD program; however, the nature of this research project is highly multi
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collaboration with the National Physical Laboratory and the Institute of Cancer Research and benefits from the scientific environment and resources provided by the Centre for Vision, Speech and Signal Processing
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physical activity in Surrey, and our mission is to deliver the best possible sport, health and wellbeing experience to our University of Surrey students and to the wider SSP community. We provide strategic
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one or more paragraphs addressing each criterion. The cover letter is an essential part of the selection process and thus a failure to provide this information will mean that the application will not be