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been identified, these will be studied using a state-of-the-art atmospheric chamber platform to simulate their effects in the atmosphere. This thesis will provide fundamental information for the large
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The successful candidate will join the Climate Physics team at ENS de Lyon (https://climatephysics-ensl.fr/ ), which currently consists of 5 permanent researchers, 7 PhD students and 2 postdoctoral researchers. We
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enclosures simulating the ocean-atmosphere interface were installed on board to study new particle formation (Chamba et al. 2023). The identified precursors, derived from marine biological activity, have
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. The doctoral candidate will be enrolled in the PHENIICS Doctoral School (Physics: Hadrons, Energy, Nuclei, Instrumentation, Imaging, Cosmos, and Simulation) at Université Paris-Saclay. This doctoral school
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engineering, electromagnetic induction, and numerical modeling and simulation. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR5128-REGPHI-005/Default.aspx Requirements Research
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simulation tools, particularly for the systems UO2–SiO2–ZrO2–Ln2O3 (Ln = Ce, Nd, Gd, Yb); U–Zr–Ln–O; UO2–SiO2–ZrO2–BaO(SrO); and U–Zr–Ba(Sr)–O. In a second phase, the project will focus on studying
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), referred to as NSS (Neuromorphic Spike Sorter). NSS has been validated in simulation and has demonstrated promising performance on neuromorphic hardware such as Loihi 2. The goal of this PhD project is to