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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 2 days ago
the prediction of vehicle flows, energy demand, and flexibility of electric vehicle fleets, with applications to energy and transportation systems. The work lies at the intersection of systems and control, data
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an upcycling strategy. By controlling the degree and nature of functionalization, the physical and chemical properties of the resulting materials can be tuned in a modular manner, opening new perspectives
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replace the current tip to achieve this force control. The final goal of the works will be to generate experimental datasets for the specific purpose of the RAIDO project. The work will be structured around
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2030 program (see https://www.pepr-risques.fr/fr/programme-de-recherche-risques-irima ). IRIMA is led by CNRS, Grenoble Alpes University and BRGM, and aims to structure and strengthen hazard and risk
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for the Compton polarimeter. This activity will be complemented by experimental developments aiming to control the optical polarization with extreme precision, better than parts per thousand. Indeed, this is a
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global demand for computing systems capable of handling massive data flows while drastically reducing energy consumption. Within France's national PEPR SPIN program, our team investigates innovative spin
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integrating new generative models into RL-EDA, such as Generative Flow Networks (GFlowNets [Bengio et al., 2021]) or diffusion models [Lou et al., 2024]. Where to apply Website https://recrutement.univ
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measurement platform capable of quantifying more than one hundred cytokines in biofluids, providing a cost-effective, robust and scalable alternative to current cytokine assays with clear translational
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). CROMA's research activities cover a very wide spectrum ranging from CMOS microelectronics (CMNE team) to photonics (PHOTO team) via millimeter waves and terahertz (DHREAMS team). They concern research in
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AIix-Marseille University/A*MIDEX | Marseille, Provence Alpes Cote d Azur | France | about 2 months ago
determinants underlying natural catalytic strategies of drug-target heme enzymes and their bioresistance. Our approach of engineering redox-active Trp(s) resulting in controlled Trp radical(s) as substrate