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integrative neuroscience, the laboratory is organised around four main teams: - Cognition-Behaviour-Context - Social Behaviour and Collective Dynamics - Physiological and Psychosocial Stress - Social and
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interactions that control natural changes in Amazon climate and vegetation under different climatic forcings of the past two glacial cycles. This project provides a dynamic working environment between about
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the study of water dynamics in porous media [1,2]. Two main research directions will be pursued: (i) the integration of NMR cryoporometry to probe pore structure at the nanometric scale; and (ii
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systems, controllable loads); • Dynamic reconfigurations related to changes in topology and operating mode (connected/islanded); • The increasing interactions between physical and digital layers (sensors
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preparation of technical reports for AFALULA and RCU. • Contribute to peer-reviewed publications, conference presentations, outreach materials and the wider dissemination of project results. The Dynamics
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of centrifugal instabilities. The dynamics of large-scale structures will be probed using high-speed imaging of spontaneous plasma light emission, while spatially and temporally resolved plasma parameter
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- Diversity, Ecology and Evolution of Microbes (http://www.deemteam.fr/en/ ). Our lab is situated in the new campus of the University Paris-Saclay, ca. 30 km south of Paris. A suburban trains connects with
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development have been set-up to respond to these societal issues. Scientific supervisor: Thomas Berthelon - MOST team ([email protected] ) Where to apply Website https://emploi.cnrs.fr
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lane-keeping and stop-and-go will be considered. The second part of the work aims to extend the study to more complex driving situations in dynamic environments with other road users (pedestrians
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the transport and interaction of radiolytic species. To address this issue, the second approach will rely on molecular dynamics simulations using the LAMMPS code and ReaxFF empirical potentials, following