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of studying and optimizing the microstructural and mechanical properties of granular materials bonded by a solidified foam, within the framework of the ANR project BONDINGFOAM. This mission is structured around
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selectivity between materials and minimize plasma-induced damage, will be evaluated as part of this study. To achieve this objective, it will be necessary to understand the etching mechanisms of the different
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history have been well constrained (geometries, paleo-geographies, wheeler diagrams, as well as, thermal, erosion and accumulation histories). Using thermo-mechanical modelling coupled with surface process
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-temporal context and their environment. ECO-EVO BIODIV draws on a wide range of conceptual frameworks, approaches and methods from an interdisciplinary perspective. Within the framework of ECO-EVO BIODIV
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of both CO and CO2 to methylated aromatics but the origin of such efficiency remains poorly understood. the project proposes to decipher the reaction mechanism leading to high selectivity to methylated
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characterization of FSS/metasurface-type devices made reconfigurable through the integration of phase change materials (PCM). Part of the role will also involve understanding the mechanisms underlying the insulator
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Polytechnique de Grenoble (Grenoble INP) and the University Grenoble-Alpes (UGA). LEGI carries out a wide range of research activities with a common ground: fluid mechanics and related transport phenomena