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Field
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-of-the-art epitaxial reactors, including Metal-Organic Vapour-Phase Epitaxy (MOVPE) and Molecular Beam Epitaxy (MBE) reactors, as well as a wide range of semiconductor characterization equipment (such as SEM
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6.5 in each component. You can read more about our entry requirements here: http://westminster.ac.uk/study/postgraduate/research-degrees/entry-requirements . For general queries about the application
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experiments at international X-ray facilities in France (ESRF) and Germany (EuXFEL). This project offers the opportunity to undertake ground-breaking research in the field of shock-physics, involving elements
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state-of-the-art two-photon lithography followed by conformal metal deposition, we will fabricate diamond-bond 3D ASI structures with controlled bond angles and lattice spacings. The magnetic microstate
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on empirical optimisation, leading to inefficiencies in energy use and impurity removal. This PhD project proposes to develop a Coupled Computational Fluid Dynamics-Discrete Element Method (CFD-DEM) model
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discrete element method (DEM). The research outcomes will provide critical insights into the microscale transport phenomena relevant to subsurface storage performance, including permeability evolution and
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, optimising soil engineering properties in ‘real time’, and integrating soil construction with structural elements (e.g., soil nails, retaining structures, drains). Feel free to reach out to the primary
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conditions. This PhD project will seek to carry out the fundamental metallurgical research required to understand how elemental redistribution takes place between the constituents of repair brazes in
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or international equivalent, in a related discipline. Any offer will be subject to the University admissions requirements. An IELTS score of 6.5 (with 6.0 in each element) or another English Language qualification
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PhD Studentship: Nanopore Technology for Rapid and Accurate Measurement of Antibiotic Concentrations
for small-molecule sensing. By engineering nanopores with molecular recognition elements such as DNA aptamers, this project will enable multiplexed, real-time detection of diverse antibiotics, supporting both