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skiing, alpine skiing, snowboarding, figure skating, speed skating, ice hockey, curling, etc.), where the choice of equipment and any waxing products results in significant differences in performance due
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. The PhD thesis will be performed under the IMEP-2 doctoral school at the University of Grenoble Alpes, with a speciality of MEP – Fluid Mechanics, Energy, Process Engineering. Description of the project
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the superfluid-to-insulator transition, random quantum circuits, and the effects of quantum measurements. -Develop theoretical models and analyses of disordered quantum systems. -Perform numerical simulations and
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institution is its access to high-performance computing infrastructure, which is essential for large-scale numerical simulations. Researchers on the OPERA team regularly participate in collaborative projects
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, such as narrowband filters in GHz electronics. Unfortunately, for quantum applications, the dissipation rate of magnons limits the performance of such hybrid systems. This project therefore aims to develop
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scale and the sample scale. - Establish links between microstructure and mechanical properties, by combining experimental and numerical approaches, with the aim of optimizing material performance. Within
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for in-depth molecular characterization of ARDCs. - Develop and perform upstream biochemical treatments, including deglycosylation and disulfide bond reduction. - Identify and characterize antibody
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extracellular matrix components and growth factors. Perform 2D and 3D cell culture experiments using intestinal cell lines and organoid models. Conduct cell biology, immunofluorescence and microscopy experiments
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near the institute (including an insect cell culture facility) and to the expertise of the managers responsible for their operation Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UMR5075-CYNDAV
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reconstruction by electron tomography. The experimental platform is equipped with in situ sample holders for electron microscopy, enabling experiments to be performed under both gas and liquid environments, as