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to immediately save millions of pounds, and to be deployed to reservoirs in the UK and beyond. We are looking for a well-motivated individual, with a good technical background including numerical modelling and
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methods that extend current sets of flood scenarios derived from physical and numerical models, incorporate climate change effects, and then use these enriched datasets to assess the future insurability of
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modelling activity. Demonstrated expertise in finite-element methods or related numerical techniques. Experience in code development, HPC architectures, and parallel programming is highly desirable
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increasingly sophisticated representations of marine biogeochemical processes and unprecedented high-resolution numerical experimentation. Together, they will help ensure that the modelling infrastructure
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of stress intensity factor evolution at the crack tip. Concurrently, a numerical model will be developed to complement the experimental results and allow for the calculation of crack propagation rates. Work
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physics, quantum optics, exciton–polaritons, light–matter interaction, numerical simulations, or quantum modelling is meritorious. Willingness to work in an inter-cultural, international, and diverse group
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exposed to severe weather events, whose predictability is strongly limited by numerous factors: the complexity of the orography and land use, the presence of mountain— coast—sea transition zones, and the
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tomography, high-pressure reactor) with numerical modelling (COMSOL) to quantify and predict dissolution. • Select and characterise biogenic shells (foraminifera, pteropods) from oceanographic cruises
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find and assess the most promising habitable exoplanets around solar-like magnetically active stars? Join us to build next‑generation GPU‑accelerated models of stellar dynamos and connect them
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, enabling increasingly sophisticated representations of marine biogeochemical processes and unprecedented high-resolution numerical experimentation. Together, they will help ensure that the modelling