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of 360-degree vision and robotics (collaborative robot arm, humanoid robot) to enable the dynamic handover of an object from a person to a robot and carry it together to move it. - Activity 1: Substantive
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Henri Cramail http://www.lcpo.fr/team-2-biopolymers-bio-sourced-polymers/ . The team designs bio-based polymers using polyaddition/polycondensation pathways. The main bio-resources studied
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consist of researchers and professors, as well as about a dozen PhD students, postdocs, and research engineers. The members of these research teams are also part of the Mechatronics Department of ENS Rennes
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the hydrogeology of volcanic and basement aquifers. - main mission: The recruited researcher will contribute to the development and implementation of numerical flow and transport models to improve the understanding
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funded by the Public Investment Bank (BPI). Mission The successful candidate will actively contribute to the development of battery packs for the project through the academic work of the UTC. Main
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de Rham" methods, the main feature of which is to reproduce subtle mathematical properties expressed by Hilbert complexes at the discrete level. The developments envisaged within the NEMESIS project
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testing of exo-endocytosis on primary cultures of chromaffin cells and neurons (carbon fiber amperometry, pHluorine imaging). • Calcium imaging and measurement of lipid transfer at MCS. • Quantitative
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biostatistics, - At least 2 years of postdoctoral experience, and if possible experience in supervision (master or PhD students), - Solid background in mathematical modelling and computer programming
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the potential of RL, it is essential to design a framework that connects an RL environments with suitable execution environments. The primary focus will be on developing advanced RL methodologies, particularly
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different 3D printing techniques based on photopolymerisation. The main task is to develop and characterise new photosensitive resins for micro-3D printing via two-photon polymerization, for DLP 3D printing