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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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of a substrate by ion implantation and annealing. In practice, the 2D material will be deposited on a substrate previously implanted with H⁺ and/or He⁺ ions, then subjected to annealing. This process
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on the development of materials and processes and is divided into two axes. The first axis aims to improve the most promising state of the art cell materials by optimizing their compositions, microstructures and
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sputtering or in an ionic liquid. It will then study their effect on the photoconversion properties of CO2. Finally, the BiBOP project uses innovative synthesis processes but is primarily part of an approach
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structural health monitoring of structures immersed in heavy fluids, by continuing to develop the “Modal Strain Energy” and “Matched Field Processing” methods for detecting and locating a potential defect in