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project EP/Y024052/1: ‘NNZA: Particle packing simulator for advanced energy storage materials’. Our previous EPSRC funded project led to a spin-out company, commercialising the first of its kind instrument
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and provide a stipend of no less than the standard UK Research Council rate (set at £20,780 per annum for 2025/26 academic year) for 4 years. The adverse environmental effects of fossil fuel consumption
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manufacture, to enable quantitative imaging. Your research will include a mix of computational and experimental work to develop and characterise these instruments. Monte Carlo simulations (using GEANT4) will
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astronomical observatories and facilities. The project will involve generating new simulations and carrying out observations of black hole candidates. This research will explore and identify the factors
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industry's standard titanium alloy due to its strong balance of properties and low density. However, future aerospace designs demand materials with enhanced performance. Recent research suggests that reducing
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Luleå University of Technology is in strong growth with world-leading competence in several research areas. We shape the future through innovative education and ground-breaking research results, and
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. We carry out research in the areas of electronic systems, machine learning and cyber-physical systems. The Electronics Systems group focuses on electrodynamic simulation and modeling. The research and
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Research theme: Computational Materials Chemistry This 3.5 year PhD position is fully funded by an external sponsor (AWE). The stipend was costed as follows: £19,815 (Y1), £20,410 (Y2), £21,023 (Y3
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mechanisms occurring in these materials and their synthesis over all relevant length scales (e.g., cutting-edge ab initio methods, atomistic simulation methods, multi-scale modelling, machine learning) High
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). A curriculum vitae, structured as per TENK guidelines (include applicable sections, see https://tenk.fi/en/advice-and-materials/template-researchers-curriculum-vitae ), including two references