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Field
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of massive galaxies from the primordial Universe to z~2. This project combines a unique JWST dataset with state-of-the art hydrodynamical simulations and machine learning techniques to understand the origins
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simulation work related to laser-plasma acceleration. This project contributes to the development of compact electron beam optics and diagnostics, essential for advancing the applications of plasma
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developed jointly by LEM3 in Metz and the BIOS laboratory in Reims. The former, with its expertise in simulation and ex vivo experimentation, draws on the clinical expertise of the latter while incorporating
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Innsbruck (J.Phys.Chem.A2021,125,7662−7669) in an existing machine. The successful candidate will be responsible for the theoretical design (SIMION simulations), mechanical design (SOLIDWORKS), and final
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integrated photonics, and includes the potential to become a co-founder of Lightspring. We are looking for someone with complementary skills in photonics, optical design, numerical simulations of photonic
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plasmodesmata (Bordeaux, Bayer) and in protein/membrane interaction by molecular dynamic simulation (Taly, Paris). To gain mechanistic insights into MCTP action and ER tubularization at PD, the post-doc will use
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thin film deposition is strongly recommended. Knowledge in solid-state chemistry, ceramics, nanoimprint lithography processing, (photo)electrochemistry, or optical simulation (RCWA and FDTD for light
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accessible observables in attoscience. The postdoctoral researcher will carry out methodological developments and advanced numerical simulations to explore these ultrafast dynamics in exotic systems. -Develop
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at the interface between two teams with expertise in plant cell biology and plasmodesmata (Bordeaux, Bayer) and in protein/membrane interaction by molecular dynamic simulation (Taly, Paris). To gain mechanistic
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machine learning - Coding - Tests with simulations - Data analyses - Paper writing - Presenting results - Integration within the BioDiv team at IBENS - Availability of work