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on crystallisation screening. The successful student will be based primarily at Diamond Light Source, Harwell Science Campus, Oxfordshire but will also spend time at the University of Nottingham. If you have a
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within the Centre of Excellence in Coatings and Surface Engineering (CE-CSE) at the University of Nottingham and Rolls Royce. Rolls Royce produces aeroengines for civil and defence aerospace and the
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Background Applicants are invited to undertake a 4 year, fully-funded PhD studentship within the Centre of Excellence in Coatings and Surface Engineering (CE-CSE) at the University of Nottingham
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the molecular composition of tissue by using light to excite molecular vibrations in the sample and generate Raman scattered photons. However, because of high light scattering by biological tissue, conventional
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: Biophotonics/Optics Raman spectroscopy is a powerful label-free analytical technique that measures the molecular composition of tissue by using light to excite molecular vibrations in the sample and generate
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polymer composites. A PhD student working on this project will conduct research in manufacturing, specifically Resin Transfer Moulding (RTM), of large primary aerostructures. The work will focus
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Airbus, to address the key challenge in meeting zero waste in the manufacture of fibre-reinforced polymer composites. A PhD student working on this project will conduct research in manufacturing
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applications Supervisory team: Dr Marco Simonelli Dr Ian Maskery Project description The vision for next-generation Additive Manufacturing (AM) is to control the composition of every deposited volume to make
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-generation Additive Manufacturing (AM) is to control the composition of every deposited volume to make functional materials (FMs) directly from digital designs. These FMs could replace assemblies
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composites with tailorable features via bottom-up synthetic routes. Using a combination of diffraction, microscopic and spectroscopic tools, structure-function relationships will be determined. The proposed