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PhD in Computational Fracture Mechanics: Methods, Programming and Simulation School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Dr J L Curiel Sosa Application
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lead and perform research in these areas, who will have practical experience of blast experimentation, underwater blast loading, and demonstrable computational modelling experience in a relevant area
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/scholarship Essential Application and Interview Effective organisation and time management skills Essential Application and Interview Ability to motivate high performance in others Essential Application and
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opportunities The student will join a team of postdocs, PhD students and technicians and will directly benefit from their hands on support and expertise. The student will use/learn cell culture, basic molecular
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. Essential Application & Interview Significant experience in high-fidelity simulations of turbulent flows, high-performance computational methods and programming. Essential Application & Interview Unique self
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-performance metallic components. The LPBF utilises a rapidly scanning high-power laser to scan and melt metallic powder alloys and form high-density geometrically complex end-use components. However, the LPBF
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-performance metallic components. The LPBF utilises a rapidly scanning high-power laser to scan and melt metallic powder alloys and form high-density geometrically complex end-use components. However, the LPBF
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aero-engine design, ensuring gas flow is not lost through leakage, is an essential requirement for efficient performance and low fuel consumption, and is achieved by having very tight clearances between
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Computational Spectroscopy/Hydrogen-tunneling at elevated temperatures in the gas-phase School of Mathematical and Physical Sciences PhD Research Project Self Funded Prof AJHM Meijer Application
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imaging approaches to develop ways to measure film thickness, roughness, uniformity, and crystallinity; all these aspect play a crucial role in the final performance of these devices. Areas and approaches