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This is a theoretical/computational postdoctoral position for the prediction and development of point defects in two-dimensional materials for applications in quantum technologies. Project
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manufacturing technologies. - Failure and degradation process simulation for transmission components and materials, notably wear, fretting, and thermo-mechanical fatigue. Experimental studies to support these
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data acquisition and interpretation are highly desirable. This is a collaborative project between the School of Pharmacy, The School of Computer Science, Physics and Astronomy, the School of Life
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-based role focusses on electromagnetic design, computational modelling (e.g., COMSOL, CST, ANSYS), dielectric characterisation, and testing that help to bridge the gap between laboratory-scale research
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Facility at the University of Nottingham. The Facility is operated jointly by the Schools of Chemistry, Life Sciences, and Physics and Astronomy and comprises a 600 MHz DNP MAS NMR spectrometer equipped with
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team consists of researchers across sustainability, food systems, operations and supply chain management, computer science, environmental and animal science, and environmental statistics. The successful