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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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project based on a living model. Consequently, working hours will be adapted to the biological requirements and developmental stages of the model organism. The scientific environment at the Institute
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: a) Inventory and mapping of CES through geographic analysis. b) Participatory mapping and surveys. c) Temporal modeling to anticipate future developments. d) Development of an evaluation matrix
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(AlphaFold 2 and 3) to determine the atomic or amino acid-scale structures of MutSa and MutSb complexes with SHIP motifs present in SLX4 and EXO1 proteins. Where to apply Website https://emploi.cnrs.fr
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of the signal molecule/receptor complex. The successful candidate will collaborate with and discuss results with team and consortium members and communicate research findings through seminars, publications and
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games. The PhD will aim to study the impact of uncertainty on the utility function on both the computational complexity and the algorithms available to find the Nash equilibria of the resulting games
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of components at cryogenic temperature and the use of simplified transistor models such as s-EKV or ACM. Project description: Industrially fabricated devices based on the fully-depleted silicon-on-insulator (FD
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lattices, which increases printing complexity, particularly in terms of shapes, material incompatibility, and material adhesion. These challenges are further reinforced by the anisotropic behavior of most
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' genomes model. This 'two-speed' genome model stipulates that the genome is composed of two compartments with different architecture, content and speed of evolution. The first compartment, composed of core
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: the Center for Nuclear Sciences and Material Sciences (CSNSM), the Laboratory for Imaging and Modeling in Neurobiology and Cancer Research (IMNC), the Orsay Institute of Nuclear Physics (IPNO), the Linear