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Field
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of quantum error correction, tensor networks, and/or machine learning. Experience with programming and numerical methods is preferred. Overtime Status Exempt: Not eligible for overtime Appointment Type
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Are you interested in crossing borders between geometry, numerics, and physics?The position at hand challenges you to work both as a mathematician and a physicist in the area of plasma physics and
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structural properties of nanostructures and nanoparticles. We combine expertise in nanofabrication, laser science, nonlinear optics, sensing, advanced imaging techniques and numerical modelling. About the role
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of collections of fluid particles distributed over a lattice is here preferred to solving non-linear PDEs. Processing a simulation in this way has some advantages. The low numerical dissipation allows
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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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(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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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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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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: The successful candidate will be expected to: Carry out high-quality research under the supervision of our experienced faculty members. Participate in the development of theories, and perform numerical simulations