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, the operating regime of future power plants is far beyond that of existing devices requiring to extrapolate the predictions with large associated uncertainties. Recently, tokamak simulations have been shown
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organic molecules in astrophysical environments—from cold interstellar ices to the early stages of planetary systems. The successful candidate will contribute to experimental studies simulating interstellar
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fluxes not represented by ISBA, and hence evaluate the potential effect of those on the carbon accumulation processes and CO2 emissions. - 1D ISBA simulations on the Abisko, Churchill and Zackenberg sites
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an approach based on 3D imaging and numerical simulation. The objective is to support the development of the most "infiltrable" ex-PIP matrices by characterizing the spatial organization of these porous media
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manager is Sabine Rode. The recruited researcher will simulate flows within membrane modules using ANSYS Fluent computational fluid dynamics software. He or she will study the nature of flows and solute
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of nonlinear dispersive equations and their discretization. The objective will be to establish new robust and efficient schemes for the simulation of quantum fluids dynamics, to perform their numerical analysis
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two years primarily on the simulations of these novel detectors. The successful candidate will work within the FCCee Clermont team and in close collaboration with the other laboratories of the GRAiNITA
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that perform process simulation, validation tests of the results and real operations will be performed. The successful candidate will be part of the Institute of Materials Science of Mulhouse (IS2M-UMR 7361
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Theory of Large-Scale Structure (EFTofLSS)—to include the effects of massive neutrinos and non-standard dark matter, validate theoretical predictions against simulated datasets, forecast expected
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quantum dots. In particular, based on our recent result in small arrays, we aim at exploiting coherent control of spin qubit in larger arrays to perform quantum simulation or algorithm. Therefore