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on the feasibility for using neutrons to image high density objects. Neutrons have higher penetrability than X-rays but neutron generation and imaging solutions are more challenging and so they are yet to be fully
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Kyropoulou and will work in areas related to (Theoretical) Computer Science, Algorithmic Game Theory, and/or Fair Division with potential applications in Blockchain in the context of the EPSRC funded research
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effects in magnets, this project will develop Density Functional Theory methodology for multicomponent lanthanide materials. We will study, for example, how application of pressure causes the f-electrons in
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thereafter. For eligible students the studentship will cover Home tuition fees plus an annual tax-free stipend of the standard amount for 4 years full-time, or pro rata for part-time study. Students will be
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Berrett as part of his 1.5M Euro ERC-funded project HeDiStat: Statistical theory and methodology for the combination of heterogeneous and distributed data. This studentship will be based at the University
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will be put on the effect of structural defects on the electronic properties of the investigated heterojunctions. While we will mainly use density functional theory (DFT) to achieve these goals, we will
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13 PhD positions in Cohomology, Geometry, Explicit Number Theory (COGENT – Doctoral Network) Marie Curie Doctoral Network Funding Available Students Worldwide View DetailsApply Online
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oxides, hydroxides and hydrides using a combination of solid-state density-functional theory (DFT) and machine-learning force fields (MLFFs). DFT methods will be used to study materials of interest
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greater stress. The understanding of the relation between the material microstructure – grain structure, grain orientations, defects – and the in-service performance of the wheel is limited at present
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PhD Studentship: Development of Next-Generation High-Performance Titanium Alloy for Aerospace Applications Funder: EPSRC and Rolls-Royce plc Duration: 3.5 years Supervisors: Professor Nick Jones and