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silicon waveguides with a nanometric core. This work will include the development and optimization of simulation tools for the design of these waveguides, combining numerical results with simplified models
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into host cells. They play a central role in the spread of antimicrobial resistance and in numerous pathogenic processes. This doctoral project aims to elucidate the molecular mechanisms of substrate
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with both the CNRS and UGA, organized into five research teams conducting work in cognitive science (Body and Space, Development and Learning, Language, Consciousness, Memory & Metacognition, Vision
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through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description This work is part of the PEPR Math-Vives
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The Center for Research in Neuroscience Lyon (CRNL) is part of Inserm, CNRS, and Lyon University, and one of the largest neuroscience institutes in France, providing an excellent and stimulating research
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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
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&matricule_prop=67533 Post-translational modifications (PTMs), such as phosphorylation, ubiquitination, glycosylation, and SUMOylation, are key regulators of protein function, shaping immune signaling and
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student at the University of Paris-Saclay attached to the doctoral school of Particles, Hadrons, Energy and Nucleus: Instrumentation, Image, Cosmos and Simulation (PHENIICS). This work will be carried out
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sustainable development is a priority. The valorization of biomass co-products, particularly for producing high-value ingredients in the nutraceutical field, is a rapidly growing area of research. As part of
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technique will be employed. Its specific purpose will be to render the tissue transparent in order to visualize the recording probe's trajectory with high precision and to confirm its anatomical location. A