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The researcher will be in charge of the implementation of geophysical approaches at the Guyaflux site, Paracou, French Guiana, to spatially extrapolate punctual information on soil obtained from conventional
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together CNRS researchers and ENS-PSL faculty members. The successful candidate will join the Deformation and Structures team, which specializes in the observation and modeling of tectonic processes, from
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, opportunities and effectiveness of methods for quantifying the environmental impacts of AI The following activities are expected: - conduct between 10 and 20 semi-structured interviews on the ecosystem of French
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. This includes the controlled synthesis of nanocatalysts, their advanced characterization (TEM, XRD, operando spectroscopies), and analyzing the relationship between their structure and catalytic activity
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charge of the IMN experimental part of the ANR BiBOP project on electron microscopy and XPS spectroscopy under controlled illumination and environments. Perform structural, physicochemical, and optical
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relies on the expertise of the BiosCiences group of iSm2 of the construction of hybrid photosynthetic units using copper metalloenzymes (Laccases).[1-3] References: Références: [1] Lazarides, T. et al
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-noise measurements - **Knowledge of mesoscopic physics:** Familiarity with superconductors, quantum physics, Josephson junctions, material band structures - **Cryogenics:** Use of closed-cycle cryostats
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of the variability and uncertainty of simulated outputs • an explicit quantification of prediction error • an interpretable and controllable structure (e.g., Gaussian processes, …) 2. Model industrial system
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and the École Polytechnique, as part of the ANR Rosaly program. The LMS focuses on the mechanics of materials and structures, with a particular emphasis on topics linking mechanics and other disciplines
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of Molecular Sciences (ISMO) at Paris-Saclay University. https://www.ismo.universite-paris-saclay.fr/structure-et-dynamique-des-… Activities will be spread across two experimental facilities of the SYSIPHE team