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of Neural Networks" team studies the mechanisms of information integration in neural networks, particularly in motor control structures. The work will be performed under the supervision of Dr. Antoine Valera
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Description The project aims to implement proton-detected fast MAS solid-state NMR methods to investigate the structure of viral membrane proteins and their interactions with nucleic acids. A central objective
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charge/discharge cycles. The aim is to provide a unique tool to better understand the structure and evolution of interfaces/interphases in batteries, and thus, guide the design of more efficient and
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, with the goal of linking the photochemical properties of photosensitizers to the structural and functional responses of the skin tissue. Culture human skin cells in 2D (monolayers) and 3D (reconstructed
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multilayer systems has led to a deep understanding of acoustic phonons in such structures. However, the development of phononic devices operating in the GHz–THz range remains an open area, offering
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instruments: NMR (300, 400, 500 MHz), mass spectrometry (LCMS, HRMS), and X-ray diffraction. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UPR2301-FRABOY-005/Candidater.aspx Requirements Research
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we span scales, relating the molecular structure and composition of g-TuRCs to their recruitment and activation within cells. The IJM is situated in the heart of Paris and offers state-of-the-art
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conditions and visibility. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR6226-GREDAV-002/Candidater.aspx Requirements Research FieldChemistryEducation LevelPhD or equivalent Research
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to understand their electrochemical, structural, and spectroscopic properties, for integration into next-generation lithium-metal batteries. The postdoctoral researcher will actively contribute to a project
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charged GAGs which, when combined with collagen, produce an osmotic effect. The fluid-structure interaction will be modelled as a homogenised continuous medium within the framework of poromechanics, while