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, DSC, TGA, FTIR, mechanical and rheological properties, etc.) - Development of waterborne polyurethane dispersions (PUDs). - Identification of the best formulations meeting specifications
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associated with this position aims to elucidate the mechanisms by which cells coordinate lipid fluxes to adapt to metabolic demands and environmental signals. Lipid metabolism is a highly dynamic process
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many bacterial signal transduction systems have been characterized individually, the mechanisms by which bacteria integrate multiple concurrent signals remain poorly understood. Antimicrobial peptides
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molecules, but the microscopic mechanisms governing their adsorption strength, monolayer formation, temperature stability, and response to corrosive ions remain insufficiently understood. The project will
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). The work will be carried out in Grenoble within the GPM2 team (Physical Engineering and Mechanics of Materials) of SIMaP laboratory (Science and Engineering of Materials and Processes). This research is part
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Postdoctoral researcher (M/F), synthesis of crystal phase heterostructures by Molecular Beam Epitaxy
processing and analysis of TEM images (segmentation, extraction of morphological parameters). Modeling of growth and phase transitions (nucleation kinetics, diffusion mechanisms, droplet stability). Optical
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at interfaces and in the bulk. The work will involve operando electrical and optical characterizations, spatially resolved analyses of performance and degradation mechanisms, and the development or adaptation
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Information Eligibility criteria Knowledge Requirements: The candidate (M/F) must have a strong background in advanced quantum mechanics, with a PhD in theoretical physics. A solid understanding of quantum
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, and their kinetics. The mechanisms involved are complex and are directly impacted by the choice of starting material (impurities, microstructure, crystal orientation, etc.) as well as by the strain rate
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into the physical mechanisms involved in the reliability of GaN chips, in order to assess their criticality and thereby better define and understand safe operating domains that ensure the required reliability