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researcher to join our team at the Institut Européen des Membranes (IEM). The successful candidate will contribute to the AMSTOR project, which aims to develop functionalized hexagonal boron nitride (h-BN
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the project partners: the LCOMS and PERSEUS laboratories and the hospitals of Strasbourg. This thesis is part of the ANR THERAPEUTIC project, which aims to develop a hybrid digital environment for
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to the scientific and technological development of the LOTUSIM-Energy simulator and its associated autonomy components. Their main responsibilities will be: - Developing and integrating multi-physics simulation
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), Eq3 (3D liver models), and Eq4 (Germany, redox chemistry, and proteomics). The objectives are to: - Develop a plasma jet to treat pathological liver tissue in situ, and analyze the physicochemical
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authentic data and the use of artificial intelligence techniques, with the long-term objective of developing automatic recognition and generation systems to animate avatars. The linguistic component, led by
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stress within an epithelial tissue. Characterize transcriptional changes during epithelial morphogenesis. Develop methodologies to link gene expression, systemic factors, and tissue dynamics. Develop
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candidate will join the Magneto-optics team at the Laboratoire National des Champs Magnétiques Intenses in Toulouse (LNCMI-T). He/she will develop the instrumentation to observe for the first time traveling
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motivated to acquire new skills. Candidates must be fluent in English and/or French with scientific writing skills. The doctoral contract will take place at the CRISMAT laboratory (https://crismat.cnrs.fr
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will be encouraged to develop thermodynamic interpretations of these mechanisms to optimize their efficiency. Analytical computations, processing and fitting of experimental data, paper writing
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Develop numerical models capable of reproducing laboratory experiments