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Project (MIMIC) Contract type: Fixed-term postdoctoral contract (Inserm) Duration: 12 months renewable Starting date: 2026 (1st semester) Host structure: Inserm U1138 – Centre de Recherche des Cordeliers
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to the construction of the detector at the LNGS. Data taking should start in 2029. The subject of this postdoctoral position, funded by the CNRS for two years, is to prepare the analysis of the first data in order to
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construction, ii) the managers of the different models involved, and iii) other postdoctoral researchers focusing on complementary modeling aspects (specific analysis of soil carbon models and work on crop
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details on Galaxie website. https://www.galaxie.enseignementsup-recherche.gouv.fr/ensup/ATERListesO… to open the PDF file. Please note that to apply all the Job vacancies published by GALAXIE - Ministère
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. Using all-atom molecular dynamics simulations and enhanced sampling techniques, the project will investigate how S-glutathionylation modulates nucleosome structure and dynamics, alone and in combination
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, visible, and attractive; capable of structuring consortia; attracting public and private partners; and preparing coordinated responses to national and European project calls. The specific center concerned
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electronic structure methods for the above-described properties. In more details, this will require the development of an automated approach that allows identifying the excited-states across several levels
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historical and recent earthquakes, indicating the reactivation of inherited crustal structures. This PhD project aims to quantify geomorphic signatures of tectonic activity using high-resolution topographic
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for Understanding Viral Replication: Molecular Mechanisms of Dengue Capsid Protein Binding Probed by Neutron Scattering (LYON) You will join the Large-Scale Structures group at the Institut Laue-Langevin (ILL
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PhD student at ILL: studying In situ neutron diffraction for green steel and functional metal oxides
include oxides of chromium, iron, tungsten and the strongly correlated electron systems in SrFeO3−𝛿, LaNiO3 and SrRuO3. In situ neutron diffraction will allow to extract structural details including oxygen