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fine-tune self-assembly properties. Biochemical and structural biology approaches to produce and characterize the designed proteins. Cellular and cancer biology assays to evaluate activity in relevant
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controlled power electronics to optimize the overall efficiency of electromechanical conversion. Ultimately, the system will be integrated into two thermal energy conversion cycles: a thermochemical cycle and
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interface physicochemistry; electron spectroscopies - SORG team (Organic Synthesis in Versailles): catalysis and heterocycles; fluorinated compounds and photoinduced processes; molecular materials – design
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the structure of the BMP1/PCPE2 complex by cryo-electron microscopy with the help of previously developed Nanobodies® to stabilize flexible regions. Finally, we will engineer an optimized inhibitor of BMP1 with
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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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system serving a highly stable Mach-Zehnder interferometer, a state-of-the-art velocity map imaging (VMI) spectrometer, and an electron time-of-flight spectrometer. The position provides rigorous training
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biochemistry, structural biology, proteomics, novel detection and screening methods and pre-clinical models for wound healing and regenerative medicine applications. REMOD-HEALING is a Doctoral Network funded by
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of Universities. The LPS is a member of the Friedel-Jacquinot Federation, a physics coordination structure on the Moulon plateau in Orsay (IdF). It brings together around one hundred researchers and lecturer
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expertise in the fields of power supply systems, protective relays, transient simulations and power electronics. You will be based primarily at the G2Elab laboratory in Grenoble, but will make regular visits
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systems subject to scientific, technological, economic, or social constraints. The laboratory is structured around three research teams: • CID: Knowledge, Uncertainty, Data • SCOP: Reliability