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Description The successful candidate will join the Glycomaterials Structure and Properties team at the Center for Research on Plant Macromolecules (CERMAV) in Grenoble. He/she will work under the supervision
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, biogenesis, dynamics and its mechanism of action. The PhD student will use approaches of biochemistry, biophysics, molecular biology, proximity labeling, structural biology and fluorescence microscopy. Where
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based on physical principles to identify the optimal dimensions maximizing coupling efficiency. The research activity will involve a theoretical study of advanced optomechanical structures to understand
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of proof assistant technology capable of understanding the dynamical linguistic structures found in current high-level mathematical texts. The project includes the study of interpretation mechanisms
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the scientific analysis working groups of SVOM and COLIBRI. CPPM, as the host laboratory of the KM3NeT France site, is responsible for the construction, opera-tion, and maintenance of the detector, and has
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at the heart of the PhD work have already been funded. This project focuses on the structure and spectroscopy of cage-like carbon clusters to which hydrogen atoms can attach, thereby stabilizing the cage
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separation in relation to the environmental challenges of mining. • Investigate leaching and extraction mechanisms in these unconventional media (complexation, structuring, kinetics, thermodynamics). • Explore
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mechanical structures, systems, and processes. Our areas of activity are in line with those of the mechanical engineering industry, with a particular focus on projects in the fields of aeronautics, space
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the development of a phase-field model to study the mechanisms of formation and growth of tetrataenite (Ni-Fe with the L1₀ ordered structure) during cooling. The objective is to incorporate the presence
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interacts sequentially with at least two structures of the host envelope: a conjugative pilus and the Tol system involved in membrane integrity and cell division. However, it is unclear how fd binds