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, symbiosis, methanogenesis, etc.). - Link events to genomic function and context: functional enrichments, proximity of mobile elements, recombination hotspots; establish predictors of genetic innovation
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physical interaction necessitate the use of multiple robots to mitigate this issue [1]. Finally, despite the great recent progress in automation, computer science, and machine learning, robots still have
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advances is a very important element in this large-scale project. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UPR5301-ISACAL-137/Default.aspx Work Location(s) Number of offers
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train station or by car (parking available). Public transportation costs are partially covered. The challenge is to establish a novel reconstitution method for spliceosome from human cellular extracts
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by N. Perret and co-supervised by L. Djakovitch. N. Perret is specialized in the development of supported metal catalysts for hydrogenation and oxidation reactions. The project BioMCat, which focuses
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of ultrasound therapy and their control in real time. This team develops new methods for the control of ultrasonic cavitation, a phenomenon that enables the permeabilization of numerous biological membranes
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subject developed within an international framework, benefiting from European funding and computational resources. The interested candidate will ideally have good knowledge of the following methods
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are minimally invasive, orally delivered medical devices that traverse the gastrointestinal tract, using electronic, mechanical, or smart material elements for diagnosis, therapy, surgery, or sampling
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computational and experimental methods. Supervision within a dynamic, interdisciplinary research team. Access to state-of-the-art research infrastructure. Career development opportunities, including conferences
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process structures. However, this method is limited by the inductive bias of the predefined superstructure. Innovation: Increased computing power and advances in data science have popularized new algorithms