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will join a dynamic team and will be directly supervised by Fanny Cazettes (CNRS). He/she will benefit from the expertise of the entire research group and from collaborations with theorists for the more
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autoequivalence groups of triangulated categories. The goal is to use Garside structures to study the faithfulness of Khovanov-Seidel braid representation for Artin-Tits groups. Artin-Tits groups are symmetry
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will be evaluated by structural and electrochemical characterizations to estimate their reuse potential. This project is backed up by a research project being developed in Hauts-de-France, involving a
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which currently consists of 5 permanent researchers, 2 PhD students, 2 postdoctoral researchers. The PhD studies will be performed in the experimental rooms of the propulsion team at LPP in Palaiseau
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researchers addressing complementary topics and methodology such as Thermodynamic modelling of multi-component planetary degassing/ingassing, Molecular Dynamic simulations of silicate melts, Petrology
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important challenge which makes it possible to validate their structure and ensure a supply to further biological studies, Quartromicins, isolated in 1991 in limited quantities, are natural compounds which
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to understand the biomineralization mechanisms that lead to the formation of highly ordered silica structures in marine sponges, bridging concepts from physics, materials science, and biology. Key
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interpretable local explanations for opaque machine learning models. Our approach is structured around two complementary axes: simplified abductive explanations ("Lite Explanations") that offer a compromise
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Sadron Institute. The team works on themes related to the process-structure-property correlations of pi-conjugated materials for applications in organic electronics. The SYCOMMOR team has particular
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of interacting with the homologous chromosome rather than the sister chromatid. In this project, we will study the regulatory mechanism of the recombinases (RAD51 and DMC1) that enables this control, using mouse