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intracellular compartments and the plasma membrane. Based on robust preliminary results identifying three different types of MCSs at exocytosis sites, our project aims to study their formation, dynamics, and
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is to implement and test innovative proton polarization transfer approaches to characterize intermolecular interactions between macromolecules. The protein solid-state NMR team focuses on the study of
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criteria • PhD in Physical Chemistry, Physics, or a closely related discipline • Strong hands-on experience with ultra-high vacuum (UHV) systems, infrared spectroscopy, cryogenics, and/or molecular beam
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in such materials. You will play a central role in imaging ferroelectric domains in a new class of 2D ferroelectrics using state-of-the-art cryogenic micro-spectroscopy techniques. This work involves
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workshops, seminars, and other dissemination activities ; - Assist other members of the hosting team, including more junior researchers (phds) in their research. The selected candidate will be based
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of confining interface modes. Through high-resolution Brillouin scattering and coherent acoustic phonon generation experiments, we will study the dynamical behavior of microstructured systems. We propose
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. The team has strong international connections and is part of the URI group and the EURIdoc programme. It has numerous links with industry. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UPR3572
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The candidate must hold a PhD in humanities and social sciences, preferably in geography or science studies. A good knowledge of research methods in humanities and social sciences, particularly semi-structured
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altitudes. Recent studies show that aerosols warm the lower atmosphere of the Tibetan-Himalayan plateau by approximately 50%. Black carbon (BC) present on snow and ice significantly reduces albedo, thereby
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activity focused on the study of the interior of the terrestrial planets of the solar system Space missions and Earth-based observations are providing unprecedented data on the interiors of terrestrial