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the aim of identifying relevant topological invariants to characterize the underlying dynamics and guide the selection of appropriate reduced models. - Adapt and implement existing topological tools
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at conferences; Supervise and mentor Master's students or PhD candidates involved in the project; Contribute to the scientific dissemination and valorization of the research (papers, patents, presentations
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of PhD students and post-docs working on different aspects of seafloor spreading (magmatism, tectonics, hydrothermalism) on a range of time scales, with observational and modeling approaches
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of the ERC NEMESIS Synergy project (see https://erc-nemesis.eu/ ). The aim of this project is to build an integrated computing chain based on "Discrete de Rham" methods, the main feature of which is to
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modification by electrochemistry, understanding these processes and their applications, the postdoctoral researcher will be tasked with developing a new approach/methodology based on the principle of electron
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dynamics simulations, to help advance theories describing the scaling behavior of polymers. This project will employ such generic, particle-based, models to simulate polymer dynamics in the search
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currents on plankton diversification. (S)he will study the connectivity of water masses using a lagrangian approach and design a population genetic model on the connectivity network. - Lagragian
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CNRS/IN2P3 and Université Toulouse III - Paul Sabatier. The L2IT Particle Physics team contributes to understanding the dynamics of the scalar sector of the Standard Model through studies of the Higgs
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activation, controlled biodegradation, and wound healing stimulation properties. The formulation is based on a hybrid macromolecular system combining natural molecules (anti-inflammatory and pro-scarring
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significantly deformed by tides? We will address this question using an experimental model approach. The agent will be responsible for: - installing the metrology equipment (PIV and conductivity probe