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will develop and operate a reproducible computational workflow that combines molecular and periodic electronic-structure calculations, and when appropriate time‑dependent methods. The workflow will be
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charge of the IMN experimental part of the ANR BiBOP project on electron microscopy and XPS spectroscopy under controlled illumination and environments. Perform structural, physicochemical, and optical
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structure of protein complexes formed in the presence of different surrounding lipids using cryogenic electron microscopy (cryoEM). To achieve this, various molecules can be used to "extract" the receptors
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, the structuring of the input, the inclusion of depth and time dimensions, the loss function for the multivariate output, etc.) and we therefore expect the post-doc to make significant contributions to the field
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practice-oriented monitoring system, as well as collecting and analysing qualitative data within the EvaCQ project. This project aims to scientifically accompany and evaluate the structural and conceptual
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developed in solid and structural mechanics. In the course of their previous experience, they will have developed knowledge in one or more areas of non-linear physics or solid mechanics, such as fracture
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or PostDoc) will deal with the generation of spin and orbital electronic currents for spin–orbit torques in solid-state devices made of light metals, metallic ferromagnets and/or magnetic insulators. In
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attention as a major regulatory marker controlling diverse aspects of RNA metabolism and function, including: alternative splicing, structure switching, export, miRNA maturation, stability, translation, m7G
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electronic structure on the ferroelectric properties. The chosen materials will be optimized by successive simulation, processing, and characterization iterations and integrated into scaled arrays to provide