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chemical processes related to the energy transition. Combined approaches of advanced characterization will serve in the design of porous materials while providing a better understanding of their performance
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chemical processes related to the energy transition. Combined approaches of advanced characterization will serve in the design of porous materials while providing a better understanding of their performance
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the prospect of producing unlimited energy in the form of chemical fuels (such as H2 or EtOH) for the energy sector and also raw chemicals for the industry (such as CO, MeOH, carbonyl derivatives) with sunlight
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contacts, to identify transition temperatures in the range 100–250 °C - Optical irradiation to determine the energy thresholds required for phase change, specific to different PCM compositions. -Multiphysics
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the supervision of students (interns and/or PhD candidates) -preparation of scientific publications and progress reports -presentation of results at national and international conferences This work will be carried
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scientific activities, including particle accelerators and detectors for high-energy physics, nuclear physics, astroparticle physics and cosmology, as well as applications in health and environment. Located
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- supervising student (intership, PhD candidate) - writing articles - taking part in conferences This work will be carried out within ISMO (Unité Mixte CNRS / Université Paris-Saclay) as part of a European
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asymmetries along the former Inner-German Border” was launched in October 2024 (https://divsky.hypotheses.org/ ). It brings together around ten researchers and lecturer-researchers (UMR Printemps, UMR
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practically applied either as a full replacement of standard DNS or as a reduced-order model reproducing the main features of turbulent flows (energy spectra, scale-by-scale energy transfers, intermittency
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fundamental and clinical point of view. It combines diverse approaches ranging from genetics and cell biology to biophysics and from human cognition and psychoacoustics to computational neuroscience to create a