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Field
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area of Mechanics and Materials is interpreted widely, encompassing experimental, theoretical and computational methods. However, it is expected that the PhD will be supervised by a member of Academic
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to improve mechanical performance in composite structures under extreme loads. Emphasis will be placed on the design of hybrid configurations capable of promoting controlled and progressive failure modes
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thermal resistance – potentially modifying the coupled electro-mechanical-fluid loading and causing fatigue and early failure. This PhD project will investigate how biofouling affects the hydrodynamic
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orthopaedic surgeons in the Trauma and Orthopaedics Research Group in the Belfast Trust. The PhD will suit applicants with a background in biomedical, mechanical, or electronic engineering who are interested in
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@ucl.ac.uk) or Prof Peter Lee (peter.lee@ucl.ac.uk). For application process queries, contact Ruikang Xue (ruikang.xue@ucl.ac.uk). About you You will have a PhD in a relevant discipline (e.g. computational
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porous ceramic supports using desktop scale 3D printing for molten salt membranes. The advantages of these membranes include very high temperature stability, high mechanical stability and longevity
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reduce blood pressure. However, the underlying molecular mechanisms remain poorly understood. This project will investigate the epigenomic mechanisms that influence hypertension and examine how GLP-1 RA
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developed during this work will deepen our understanding of nonlinear wave phenomena in fluid mechanics and contribute to the broader theory of interfacial flows. This PhD project is in a competition for a
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Virtual manufacturing of discontinuous fibre composites for high-performance automotive and aerospace structures (C3.5-MAC-Qian) School of Mechanical, Aerospace and Civil Engineering PhD Research
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. This project is available in the Computer Science Research Institute and is tenable in the Faculty of Computing, Engineering and the Built Environment, at the Magee campus. The PhD researcher will be based