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models that account for the dynamics of the actin polymer population in the cell cortex. The analysis will be carried out using probability theory and simulation tools, and will be based on a real effort
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to propose an electronic wave packet that significantly increases the quantum yield of the photo-conversion reaction. - simulation of the quantum dynamics of the photochemical reaction induced
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within the LTCI laboratory, specializing in the design and security of integrated and embedded systems. Its work focuses on modeling, simulation, and automatic code generation to facilitate the design of
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-page cover letter linking your interest in the project to your research experience and skills, (2) a full CV (including a complete list of publications), (3) a copy of your doctoral diploma and (4) two
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mitigated. Key missions of the postdoctoral researcher: Model and simulate shipboard microgrids, integrating realistic dynamic marine loads, DERs,and energy storage systems. Design and implement advanced
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of aerosol and soil particles based on simulation chamber experiments and soil spectral and directional reflectance measurements. This is a prerequisite for improving the representation of the mineral dust
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cross-validation and simulation-based checks; document performance and limitations. * Software engineering: contribute maintainable code to laMEG; add unit/integration tests and continuous integration
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to guideline analysis, the construction of simulated trials, and the feasibility assessment in French databases (SNDS, CONSTANCES, EDS-APHP). Activities : Contribute to the design of simulated trials (target
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spectroscopy analyzes will also be carried out. Microstructural parameters deduced from characterizations performed by partners of the project and electrochemical responses will be simulated using digital twins
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spectroscopy (XPS), Ellipsometry and Raman spectroscopy • Experience in clean room microfabrication • Experience in electrical measurements of materials and memristive devices • Numerical simulation skills (e.g