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(Ecology & Environment – Biology) and aims to exploit the complementarity between population genomics, phylogenomics, molecular and functional evolution, and molecular virology to (i) characterize the impact
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polarization in boosted hadronic boson decays will provide access to larger event samples and higher energies, albeit in a more challenging jet environment. Information from jet substructure, combined with
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of the International Heliophysics Data Environment Alliance. Computational work can be carried out on the LabIA platform at LISN, the computing facilities of the Paris Observatory, and the Jean Zay supercomputer. Travel
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association with the ITER project; • Astrochemistry and exobiology, to simulate various environments and to prepare for future space missions and observations; • Surface sciences and innovative materials
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quantification and multi-fidelity modeling. • Ability to analyze and exploit large simulation datasets. • Ability to work in a collaborative multidisciplinary environment. Desired experience : • Experience in
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(focusing on polar and alpine environments) and geophysical fluid dynamics. We collaborate with several colleagues from the Physics Laboratory, who are experts in hydrodynamics/climate research (about 15 PIs