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combines multimodal neuroimaging with computational modeling to characterize the neural mechanisms underlying human social decision making. The focus of this project will be to unravel the neurocomputational
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the combination of optical pumping, SAWs, and a magnetic field will enable the demonstration of mechanically driven T-center spins in the sideband regime. In Er-doped SOI samples, provided by our collaborators
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approach combining: • The implementation and optimization of environmentally friendly extraction processes, • A fundamental understanding of the associated inhibition mechanisms, and • Life-cycle analysis
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the experimental development of an approach to the 3D characterization of organic crystals. The approach is based on thermo-microscopy, combined with multidirectional observation, allowing for in situ, 3D
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of balancing selection is. In this context, we have launched the BalanSe ANR to better understand the importance of balancing selection in non-model organisms. This project will rely on a combination of
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specializing in zeolites and porous materials, with a particular focus on biomedical applications and green chemistry. The project combines fundamental and applied research with the training and mentorship
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of the fabricated structures. This position offers an excellent opportunity to develop expertise in high-precision silicon microfabrication within a multidisciplinary research project combining nanotechnology
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the specificity of each ABC-F. To obtain a comprehensive understanding and to limit risks, we propose a two-pronged approach combining global in vivo and in vitro methods. The in vivo methods are intended
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key materials—generally nickel-based superalloys—that make up turbine blades with ceramic matrix composites (CMCs). These composites combine lightness, thermomechanical strength and damage tolerance
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. The approach combines theoretical developments, experimental observations and advanced modeling. More and more technologies, implemented in nowadays devices or foreseen in next-generation ones, are or will be