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an atom interferometry experiment using a Bose-Einstein condensate manipulated by an optical lattice. He or she will develop optimal control protocols to develop a cold-atom gradiometer. This project will
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regulate mesodermal differentiation and epithelial-mesenchymal transitions (EMT) using innovative experimental approaches. Objectives 1. Create controlled heterogeneities in gastruloids via fusion
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quantification of pigments and binders. The work will include the generation of simulated spectral data based on physical models, the training and optimization of machine learning models, and their validation
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group (depending on the profile, materials under pressure, MOF coordination polymer design, multi-objective optimization Tc/HEDM/reactivity, etc.). - Calculating the electronic structures
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compositions (carbon, metal alloys, oxides, clays, polymers). The laboratory develops and characterizes these materials, seeking to understand and control their architecture (structure, organization
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an optoelectronic process for 980 nm high-power diamond laser diodes. In this context, the role of the LSPM is to provide polycrystalline diamond layers 2 to 4 inches in diameter with optimized mechanical
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, the following scientific question emerges: can the energy efficiency be increased by carrying topology and shape optimization of the building envelopes? Several preliminary studies have partially addressed
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of neuronal and vascular responses; Contribute to the instrumental optimization of the imaging system (detector configuration, illumination control, multi-camera synchronization); Analyze and interpret
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of electrochemical reactions carried out under strong, controlled magnetic fields. Part of the work will involve establishing an in-situ characterisation method, supplemented by research into optimal experimental
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improved in several stages and continues to evolve. It will therefore be a question of carrying out the necessary technical upgrades and optimizing (fine-tuning) the different characterizations on reference