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Matter Chemistry (ICMCB) focuses its research on Solid State Chemistry, Materials Science and Chemistry and Process: designing, preparing, shaping and characterizing materials in order to discover, control
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of their intrinsic properties. Conversely, the astrophotometric signatures measured by VLBI and Gaia could also allow to predict some of these intrinsic properties. This step can be approached using classical
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the supercurrent carried by the helical edge states as well as its fluctuations at equilibrium, which are predicted to contain signatures of the topological protection. Using nanolithography, the student will
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instrument that will allow the analysis of mesoscale thermal processes under highly controlled experimental conditions in order to understand the fundamental nature of heat transport and to measure the thermal
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. Development of technologies to profile PK activities that are dysregulated in inflammatory pathologies could provide a solid basis for development of predictive diagnostics, subsequently guiding towards
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the TRACCS research program (Transforming Climate Modeling for Climate Services, https://climeri-france.fr/pepr-traccs/ ), which brings together the French climate modeling community. Its activities cover
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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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complementary expertise, using both space and ground-based observations of the solar atmosphere, in-situ measurements from heliospheric probes, in synergy with a complete numerical modeling of the generation and
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turbulent plasmas and by phenomenological models. The overarching goal of this ambitious programme is to describe the acceleration process across length scales, in the turbulent flow, in the inner jet and in
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observations of the solar atmosphere, in-situ measurements from heliospheric probes, in synergy with a complete numerical modeling of the generation and propagation of solar jets from the solar atmosphere