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, and computational biology. The project includes collaborations with academic partners specialized in probabilistic modeling and experimental biophysics, notably through interactions with research groups
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conditions contributing to the emergence of this counter-model, based on a prosopographical framework analyzing the athletic, economic, and institutional profiles of the actors. Complementing the attention
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involve selecting various event topologies to constrain background and perform detailed study of double-beta decays. GEANT4-based simulations will be used with the software FALAISE developed by SuperNEMO
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. This thesis aims to model, optimize, and experimentally validate such an optical ultrasound sensor based on resonant metasurfaces. The work will focus on three main areas: 1. Multi-physics Modeling: Development
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on which the model is based. The benefits of the proposed methodology will be evaluated through both idealized test cases and realistic simulations, with results compared against available observations
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interested in comparing healthcare systems based on the results of modeling past epidemics (especially chikungunya in 2025). Indeed, we have obtained surprising preliminary results for Mayotte, with a very low
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with LP2M teams (immunology, iPSC models) as well as from the project's international clinical and scientific network (Prof. Claus Peter Schmitt, Heidelberg; UCA GenomiX and MICA platforms, Nice
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of investigating the relationships between microstructure, processing routes, and thermomechanical performance. The research will combine physics-based modelling and numerical simulations, including thermomechanical
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responsible for pressure generation and the physical factors limiting eversion. Finally, the experimental data will be integrated into a biophysical model linking pressure, geometry, and tissue mechanical
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biology approaches. • Previous work on neurobiology of marine systems or of genetic models is preferable. • Fluent (B2+) in oral English The Plankton Senses Team is looking for a highly motivated and