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of extensive-form games. These studies highlighted the effectiveness of combining tools from graph theory, mathematical programming, and dynamic programming to compute pure Nash equilibria in extensive-form
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cell using redox-active compounds. The objective will be to identify suitable electrolytes in terms of potential, solubility, and stability. The postdoctoral researcher will study the physicochemical
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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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enables high activity in olefin polymerization, while providing precise control over composition and molecular weight distribution. However, this activator remains a poorly defined solid at the structural
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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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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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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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to the polymers, and complexing units to allow the polymers to interact with metal ions [1]. The target polymers will be synthesized by controlled radical polymerization or telomerization. The proposed method is
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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