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Field
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science, nonlinear optics, sensing, advanced imaging techniques and numerical modelling. About the role A successful candidate will join the EPSRC funded project “Catalysis meets plasmonics: New
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date. Demonstrated expertise in optimization (e.g., convex/nonconvex, stochastic, combinatorial), probability and stochastic processes, numerical linear algebra, and algorithm design. Proficiency in
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(funded by the French National Research Agency, ANR JCJC) aims to develop a new theoretical and numerical framework to describe correlated electron–positron dynamics in atoms, and to identify experimentally
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renewable energy structures. You will be responsible for theoretical and numerical aspects of design, with an emphasis on cyclic loading of offshore wind turbine monopiles. You should hold (or be near
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Mission: Carry out tasks of the H-HOPE research project assigned to the IFLUIDS research group. Functions to be developed: Analyze pilot data and numerical simulation of the systems developed with
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planetary geodynamics and habitability. Experience using piston cylinder and DAC presses, high-temperature and high-pressure experiments, numerical modeling, Zr isotopes, atomic-scale and micro-scale analyses
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Associate with experience in numerical modelling and a passion for Antarctica. With quantitative skills that include programming and ideally also ice sheet modelling, you will lead a novel investigation into
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-class seminar series. The Center also hosts numerous workshops, conferences, and other academic events that foster collaboration, idea exchange, and visibility, providing an exceptional platform
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-of-the-art experimental techniques, innovative methodologies, and/or numerical models to make fundamental advances to existing literature. Duties will include but are not limited to: Helping develop novel
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of grant, consecutive or interpolated. Preferential factors: Research experience and/or skills in inspection, numerical modeling, non-linear analysis, seismic behavior and strengthening of ancient masonry