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Applications are invited to undertake a 3 year PhD programme in partnership with industry to address key challenges in manufacturing engineering. The successful candidate will be based at the Rolls
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of measurement techniques are capable of fully imaging material microstructure. Laser ultrasonics is one of these techniques and it does this by linking the elasticity of individual crystals and
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View All Vacancies Engineering Location: UK Other Closing Date: Sunday 30 June 2024 Reference: ENG1408X2 Applications are invited to undertake a 3 year PhD programme in partnership with industry
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Supervisors: Prof Ioan Notingher (School of Physics and Astronomy) Dr George Gordon and Dr Abdelkhalick Mohammad (Faculty of Engineering) Funding: fully-funded (stipend and PhD fees) Start date
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Supervisor: Prof Ioan Notingher (School of Physics and Astronomy) Positions available: 1 Funding: fully-funded (stipend and PhD fees) Start date: September 2024 Duration: 3.5 years Subject Area
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We are pleased to announce a PhD opportunity in flow crystallisation with in situ X-Ray diffraction. This multi-disciplinary PhD will combine reactor design, crystallisation, crystal engineering and
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at the Faculty of Engineering (FoE), University of Nottingham which conducts cutting-edge research into the development of imaging technology for biomedical applications. Vision We are seeking PhD students who
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for Additive Manufacturing (CfAM)'s expertise in applying computational materials science techniques to laser AM. The PhD student will be able to conduct research using a state-of-the-art multi-beam laser powder
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interdisciplinary areas including in soil physics/mechanics, X-ray CT imaging, laser ablation tomography and plant-soil interactions. The student will also be able to access the generic training courses offered by
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Manufacturing (AM) or 3D Printing of multiple metal materials using laser powder bed fusion (L-PBF) will be used offering new design freedoms to functionally grade (smoothly transition) between bulk material