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deliver the EPSRC programme grant REMODEL, advancing parallelmeshgeneration and geometry representation for industrially relevant, high-fidelity simulations at Exascale. Based at Swansea University, you
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has on the space-time geometry. The aim of the project is to explore the backreaction of quantum fields on black hole space-times. First, the stress-energy tensor for a chosen quantum field is computed
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aims to develop a high-fidelity modelling framework to predict key thermal hydraulic parameters for boiling flows within complex geometries at high heat flux conditions, relevant to the engineering
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for fusion components. This framework foresees two building blocks: high-fidelity Computational Fluid Dynamics (CFD) simulations of boiling flows within complex geometry using opensource software and cutting
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are recruiting a Research Officer to help deliver the EPSRC programme grant REMODEL, advancing parallelmeshgeneration and geometry representation for industrially relevant, high-fidelity simulations at Exascale
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accepted all year round Details Many theories of quantum gravity agree that the spacetime geometry of Einstein’s general relativity needs to be replaced by a different underlying structure. In particular
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of varieties and number fields. It also includes applications of p-adic geometry to the study of Brauer–Manin obstructions and rational points on varieties. The postdoctoral research associate will contribute
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of varieties and number fields. It also includes applications of p-adic geometry to the study of Brauer–Manin obstructions and rational points on varieties. The postdoctoral research associate will contribute
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to the use of chopped fibres, but can flow to form complicated geometry when compression moulded at pressures, allowing mechanical properties to be compensated through intelligent topological designs
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, the space-time geometry is fixed and classical, while the matter is quantized (and described by a quantum field). In this project the background space-time is a charged Reissner-Nordstrom black hole, and the