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of Reactivity and Solid Chemistry (LRCS) as part of the FTJ Basecamp 10kWh Project. The thesis aims to develop a comprehensive and robust solution for battery diagnostics and assessment, drawing on several
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encoding fluorescently labeled cyclin B3 and specific inhibitors of degradation and/or translation. The student will also analyze the function of cyclin B3 in meiosis and mitosis by manipulating protein
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influence helps detect labeling errors or prioritize unlabeled images, optimizing the learning algorithm and service quality. The doctoral student will carry out their work at IMAG (UMR of Mathematics) and
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uses a tumor-targeting biomolecule (e.g. antibody, peptide, small molecule) labelled with a radionuclide for either diagnostic or therapeutic purposes. Alpha-particle targeted radionuclide therapy (-TRT
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elongation. (i) The PhD student will use a fluorescent labelling system in place in the laboratory to track the consequences of DciA depletion on replication at the single-cell level using microscopy for data
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, advanced characterization, and catalytic applications. As part of the project, research stays will also be carried out at CEMHTI (CNRS Orléans) to perform specialized photocatalysis measurements and
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from ISMO's facilities as well as support from the laboratory's technical departments (mechanical workshop, instrumentation, electronics, and computing services). All components of the experimental setup
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Thesis proposed as part of an ANR Industrial Chair with
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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description This project is part of an ANR (ANR-25-CE07-4308) The project aims to develop a
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PhD on 2D quantum photonics : towards neuromorphic applications with 2D ferroelectrics materials M/F
nanophotonics with 2D materials. We offer a unique opportunity to explore emerging phenomena such as sliding ferroelectricity, ultra-low-threshold nonlinear photonics, and exciton engineering. The project is part