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Development: Design and maintain open numerical simulation codes to model these systems. - Scientific Collaboration: Collaborate with team members on this project and related research initiatives
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contingent upon prior authorization from the competent authority of the Ministry of Higher Education and Research. Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UMR8181-ANDKHO-014/Default.aspx
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Postdoctoral position (M/F) on impedance and dielectric study of solid/solid interfaces in batteries
resistances. Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UMR8182-SYLFRA-001/Default.aspx Requirements Research FieldChemistryEducation LevelPhD or equivalent Research FieldPhysicsEducation LevelPhD
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https://emploi.cnrs.fr/Offres/CDD/UMR2959-FRATHI-002/Default.aspx Requirements Research FieldMathematicsEducation LevelPhD or equivalent Research FieldHistoryEducation LevelPhD or equivalent
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impact measurements, AFM imaging, and AFM-SECM experiments. The SEEAFM project will be developed within the Electrochemistry group of the IMF team at the CEISAM laboratory. Where to apply Website https
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of the project MESSENGER: « Can rock-powered Microbial EcoSyStEms provide valuable iNsiGhts into early life and its emERgence? » funded by the PEPR ORIGINS (https://pepr-origins.fr/en/ ) and integration
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the metabolic properties of osteoclasts during development and aging using preclinical models with targeted alterations in specific metabolic pathways. - To implement single-cell biology approaches and
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Environment (UMR5300; https://crbe.cnrs.fr/en/ ) is internationally recognized for its research on the interaction between the environment and biodiversity using genetics. Numerous projects are being developed
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hundreds to thousands of years. Models will be used to reconstruct land-cover change in the surrounding of pilot sites, to reproduce the evolution of soil erosion, sediment, and carbon transfers in those
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, electronics, image and data analysis, chemistry, and biology. In this position, the successful candidate will work on the development of a novel three-dimensional single-molecule localization microscopy