265 structures "https:" "https:" "https:" "https:" "https:" "https:" "https:" "Imperial College London" Postdoctoral positions at CNRS
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the flexibility and power of NNs with the ability of LMMs to robustly learn from structured and noisy (non i.i.d.) data, applying them on the prediction of both plants and human phenotypes. These models will
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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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properties. Confocal microscopy / microfluidics / microrheology, to link the structural remodeling of the gel to the reaction kinetics occurring within the material. The identified gelation and structuring
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Website https://emploi.cnrs.fr/Candidat/Offre/UMR8628-MATMOR-005/Candidater.aspx Requirements Research FieldMathematicsEducation LevelPhD or equivalent Research FieldHistoryEducation LevelPhD or equivalent
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to set up nationwide platforms for the accelerated design of metal alloys for structural applications. The recruited person will be responsible for implementing and implementing for research projects a high
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3d colloidal model system. Background information: https://paddyroyall.github.io/padrus/Work_amoeba.html Publications of interest : https://paddyroyall.github.io/padrus/Publications.html Systems in
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synthesised in situ using a state-of-the-art pulsed laser deposition system. Key characterisations include X-ray diffraction for structural properties and temperature-dependent magneto-optical properties
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atmosphere. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7241-VIOLLA-004/Candidater.aspx Requirements Research FieldBiological sciencesEducation LevelPhD or equivalent Research
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) on the ARTEM campus in Nancy. Travel within Europe is to be expected. Team 104 “Nanomaterials for Optoelectronics” (https://NanoOptoSpin . ijl.cnrs.fr) of the IJL's Physics of Matter and Materials (P2M
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by the CNRS, the postdoctoral researcher will be responsible for contributing to the development of advanced methodologies for predicting crystal structures (CSP) based solely on their chemical