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for in-depth molecular characterization of ARDCs. - Develop and perform upstream biochemical treatments, including deglycosylation and disulfide bond reduction. - Identify and characterize antibody
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institution is its access to high-performance computing infrastructure, which is essential for large-scale numerical simulations. Researchers on the OPERA team regularly participate in collaborative projects
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. The PhD thesis will be performed under the IMEP-2 doctoral school at the University of Grenoble Alpes, with a speciality of MEP – Fluid Mechanics, Energy, Process Engineering. Description of the project
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bachelor's students and ensuring the proper maintenance and operation of the synthesis lab in accordance with the recommendations provided by funding agencies and the laboratory administration. • Develop
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to optimise performance. - Comparing electrochemical results with physicochemical characteristics to define material optimisation strategies. - Using/developing advanced in situ/operando techniques, such as NMR
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field of topotactic reduction of nickelate thin films, a novel research direction in condensed matter physics. It will be fully funded within the framework of the ANR TAME project. The project concerns
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interact with other participants in the project. • Responsabilities • Perform research on Platynereis and Ascidian larvae to investigate pressure sensory systems using neurobiology and genetics approaches
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. Experience in comparative genomics, molecular evolution, phylogenetics, population genomics or transcriptomics would be an advantage. Familiarity with genomic data formats, high-performance computing, workflow
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bacterial growth, survival and tolerance under various stress conditions, particularly antimicrobial stress. * Performance of microbiology, bacterial genetics and molecular biology techniques. * Analysis
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2030), dedicated to the development of high-performance cryogenic technologies for quantum technologies, and more specifically to ultra-low-temperature thermometry in the millikelvin range