180 web-developer "https:" "https:" "https:" "Newcastle University" Postdoctoral positions at CNRS in France
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, brings together around 300 people and is one of the leading centers for fundamental research in biology in the Paris region. The host team (https://www.ijm.fr/recherche/duharcourt-lab-vf/ ) is particularly
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with experts in climate modeling, geosciences and in renewable energy development have been set-up to respond to these societal issues. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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aims to understand the dynamics, functioning and evolution of living organisms. The work will involve interaction with members of the ANR ECOPATHS and IPEV ECOPATH projects, carrying out work in the
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. -Global (SM)EFT interpretation of LHC (Higgs, top, diboson, etc) and other measurements -Improvement/extension of the SMEFT framework ; development of a consistent uncertainty model ; studies of limits
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great interest to the chemical industry. The transformation of lignin-derived phenolic molecules under mild conditions represents a major challenge, which can be addressed through the development
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, depending on the start date. To apply, candidates must submit: 1) A detailed CV with a list of (pre)publications 2) A cover letter 3) A research proposal Where to apply Website https://emploi.cnrs.fr/Offres
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-003/Default.aspx Work Location(s) Number of offers available1Company/InstituteSols, solides, structures, risquesCountryFranceCityGRENOBLEGeofield Contact City GRENOBLE Website http://www.3sr-grenoble.fr
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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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Régis de la Bretèche and Cathy Swaenepoel. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7586-REGDUM-001/Candidater.aspx Requirements Research FieldMathematicsEducation LevelPhD
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to develop a new generation of fluorescence microscopy methods aimed at overcoming current limitations in acquisition time for single-molecule imaging. The project explores original strategies for temporal