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against several backgrounds: 1) The second mission extension of the Juno probe, which has been orbiting Jupiter since July 2016 (the end of the second mission extension is currently scheduled for October
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for studying and engineering electronic properties in quantum materials. By stacking different two-dimensional (2D) materials, it is possible to create systems with new and tunable properties. In
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been proposed: traditional computer‑algebra methods [3], reduction of the problem modulo a prime p [6, 2], and symbolic‑numeric methods [4, 1]. This postdoc proposal concerns the second modular approach
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will use Second Harmonic Generation (SHG), a second-order nonlinear optical technique that is inherently surface-sensitive since it is forbidden in centrosymmetric media and thus only generated where
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of individual spin defects in monolayer MoS2/graphene/Ir has been recently observed [4]. Further ahead, we will consider the growth of 2D magnetic halides materials, especially CrCl3, on superconducting NbSe2
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. The first consists of a device designed to ionize a gas and then accelerate the ions thus formed via a potential drop applied to a metallic grid. The second uses a magnetic field to trap the electrons
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to the most recent centuries. The second, more advanced phase will focus on investigating the climatic causes and associated external forcings. This will initially involve large-scale analysis using General
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aromatics. This wil be achieved establishing conversion-selectivity curves at different temperatures and pressures and by co-feeding some potential intermediates. In a second step, key reaction parameters and
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natural environments. It fits with Sustainable Transitions axe of the TIRIS program (https://anr.fr/ProjetIA-22-EXES-0015 ), addressing challenges related to energy transition, resource conservation and
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-Saclay region and is easily accessible by public transportation from Paris. More information is available at https://www.ip-paris.fr . The candidate will join the doctoral school of the Institut