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conformations. This structural flexibility is closely linked to their biological function but also makes them particularly challenging to study and model. The objective of this PhD project is to develop novel
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development remains limited by the difficulty in obtaining crystals with high structural quality, specifically with a stacking fault density below 500/cm². The Travelling Solvent Method (TSM), which uses a
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), such as domain walls, vortices, and skyrmions. In this proposal, we aim to extend it to three-dimensional topological spin textures (3DTST) beyond 2D skyrmions. To achieve this goal, we will: (i) develop
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based on earth-abundant metals has been revolutionized by the development of metal-mediated oxidative hydrogen atom transfer (MHAT) reactions. However, our understanding of the mechanism and our knowledge
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, biophysics, biochemistry, and molecular modeling, developing experimental and numerical approaches for the study of complex molecular systems. Within this institute, the Biophysics of Complex Systems team
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Préhistoriques (HNHP, UMR 7194) laboratory is a joint research unit under the supervision of the CNRS, the MNHN, and the UPVD. Its mission is to study the biological and behavioral evolution of hominins over
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using isotopic exchange and solid-state NMR, and the investigation of the influence of microbial activity on the evolution of these properties. The PhD work will involve: Setting up controlled incubations
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(Ecology & Environment – Biology) and aims to exploit the complementarity between population genomics, phylogenomics, molecular and functional evolution, and molecular virology to (i) characterize the impact
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on the Orsay campus, it is one of the largest physics laboratories in Europe, with nearly 800 permanent staff and a strong instrumental development capacity, supported by approximately 280 engineers and
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or ferromagnetic as well as its competition with other correlated phases (superconductivity, charge orders etc..), we propose to use the powerful method developed in our group, based on exquisitely sensitive magneto