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Topological insulators (TIs) are an emerging class of materials that are generating considerable interest worldwide with potential for many device applications as part of next generation quantum technologies
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advantage in calculating useful properties of idealised materials or experimental systems out of equilibrium. Please state your entry requirements plus any necessary or desired background First or Upper
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characterisation (FIB-SIMS, XPS) at the Bragg Centre for Materials Research at Leeds University. The project will be carried out at Leeds University, with several secondments to the AWE site for X-ray tomography
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degree (or equivalent) in an appropriate discipline. Subject Area: Chemical Engineering, Materials Science, Pharmaceutical/Medicinal Chemistry, Physical Chemistry, Artificial Intelligence, Machine Learning
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Engineering at the University of Leeds (UoL) and by Diamond Light Source (DLS). The successful student will spend 50% of their time at the UoL and the other 50% across crystallography beamlines I11 (High
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@leeds.ac.uk Project summary Ligand/material discovery has been carried out through laborious trial-and-error approaches. Recent advances in high throughput computational chemistry and AI/Machine Learning
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take place in the Soft Matter Physics group in the School of Physics and Astronomy at the University of Leeds. Within the group, we have a variety of activities across soft matter. We work with world-leading
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electromagnetic spectrum into which current radio frequency and microwave wireless communications can grow. As part of a £7M research programme between the Universities of Leeds, Cambridge and UCL, we
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Area: Inorganic Chemistry, Materials Science Keywords: Chemistry, Inorganic Chemistry, Materials Chemistry
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(Honours) or equivalent Subject Area: Inorganic Chemistry, Materials Science Keywords Crystal Engineering, Crystallography, Functional Materials, Inorganic Chemistry, Inorganic Co-ordination Chemistry