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the particle size of the oxides produced. In addition, depending on the conditions encountered in the combustion chamber (pressure, temperature, gas composition), combustion products can be nanometric and/or
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Postdoctoral position (M/F) on impedance and dielectric study of solid/solid interfaces in batteries
transport and electrochemical processes by their time constant. In that matter, BDS can decipher between ionic/electronic limitations in composite electrodes, depending on their morphology (porosity
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on different conditions (composite electrode formulation, electrolyte formulation, pH, oxide or polymer-based negative electrode, temperature…) Optimisation of the devices. Redaction of drafts/publications and
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used will be based on the use of cell-free translation extracts that will allow us to assemble and purify translation initiation complexes on our model messenger RNAs. The composition of these complexes
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associated composites, for applications in the fields of energy and the environment (CO2 capture, capture of volatile organic compounds (VOCs), detection, catalysis (H2 production, etc.), heat exchange
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scale, will be characterized in terms of their structural properties and chemical composition. This research is part of the international project (ANR-DFG) “OPTIMIC” involving French partners Dr. Dorian
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to teamwork. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR5801-STEJOU-002/Default.aspx Work Location(s) Number of offers available1Company/InstituteLaboratoire des Composites
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, the postdoctoral researcher will be responsible for contributing to the development of advanced methodologies for predicting crystal structures (CSP) based solely on their chemical composition and atomistic modeling
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critical assessment of published data. Compositional analysis of stained glass windows in the laboratory by LA-ICP-MS and on site by pXRF. The latter requires the establishment of a robust calibration
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the detection of mixing state and water content of aerosol. This project builds on four doctoral theses previously conducted at LOA that established the basis for parameterizing aerosol composition