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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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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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composition and atomistic modeling of materials. The main activities will include: - formulating new descriptors of critical temperature (Tc) incorporating electronic fluctuation effects, evaluated by
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, but is not mandatory. Participation in science outreach activities, EPR spectroscopy training, and/or (co-)supervision of interns (undergraduate or Master's level) or PhD students may also be required
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. The main objective will be to functionalize the surface of these 3D metal parts, obtained by additive manufacturing, with a coating based on metal oxide nanoparticles. This coating must have a dual
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of the ERC NEMESIS Synergy project (see https://erc-nemesis.eu/ ). The aim of this project is to build an integrated computing chain based on "Discrete de Rham" methods, the main feature of which is to
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researcher to join our team at LPICM, a joint unit between CNRS and Ecole Polytechnique, in the frame of a 'prematuration' program which aims at exploring original research that can transform into a startup
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optical to ultra- high-energy photons) or multi-messenger (gamma-ray and neutrino) are possible with Gammapy. The main objective of this position is to set up the Gammapy ability to handle different input