393 structural-engineering "https:" "https:" "https:" "https:" "University of Michigan Ann Arbor" positions at CNRS
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to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8000-MOHGHA-009/Candidater.aspx Requirements Research FieldChemistryEducation LevelPhD or equivalent Research FieldChemistryEducation LevelPhD
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to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8243-TIFKON-007/Candidater.aspx Requirements Research FieldComputer scienceEducation LevelPhD or equivalent Research FieldMathematicsEducation
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collaboration with the consortium's partners, including the teams of Dr. Lucie Brisson (Bordeaux), Dr. Justine Bertrand-Michel (Toulouse), and Dr. Marie Beurton-Aimar (Bordeaux). Where to apply Website https
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gas analysis, a GC/MS, and an HPLC/MS. DFT calculations will be performed using annual allocations on national high-performance computing centers. More details here: https://iramis.cea.fr/en/nimbe/lcmce
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diffractometer, a GC for common gas analysis, a GC/MS, and an HPLC/MS. DFT calculations will be performed using annual allocations on national high-performance computing centers. More details here: https
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cell specification, subtype diversity, and their capacity to enhance regionalization and laminar organization within cortical-like structures. Through these studies, we seek to advance the development
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calculus, type systems, and models for probabilistic programming languages. Permanent members : A. Saurin, T. Ehrhard, C. Faggian, P.-A. Melliès, D. Kesner, G. Bernardi. Where to apply Website https
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Flows in Geometrically Complex Systems Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7010-ATUVAR-001/Candidater.aspx Requirements Research FieldPhysicsEducation LevelPhD or equivalent
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research focuses on fundamental questions in automata theory on the one hand, and on algorithmic questions arising from concrete problems on the other. Where to apply Website https://emploi.cnrs.fr/Candidat
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to enhance regionalization and laminar organization within cortical-like structures. Through these studies, we seek to advance the development of a physiologically relevant human brain organoid model that more