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, to maximize science return while constraining resources usage. - Support the structuring and drafting of relevant reports and deliverables - Engage with external and internal stakeholders at different levels
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chemistry, electronic structure (static and dynamic aspects), wave function methods (Coupled Cluster, multi-configurational methods, DMRG), Quantum Monte Carlo, DFT-type methods, Green's function methods
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is embedded in the framework of a funded ANR research project, ensuring a structured research program, access to experimental platforms, and a stimulating collaborative environment. The PhD student
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of the project (https://anr.fr/projet-ANR-24-CE28-5107 ). Main Tasks • Development of a research axis: The recruited researcher will be responsible for leading the research axis focusing on the relationship
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synthesised in situ using a state-of-the-art pulsed laser deposition system. Key characterisations include X-ray diffraction for structural properties and temperature-dependent magneto-optical properties
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of stabilization or leaching of trace metals in slag. To this end, various chemical, mineralogical, and structural characterization techniques will be used: LA-ICP-MS, HT-XRD, XRF, X-ray absorption spectroscopy
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be authorized by the competent authority of the Ministry of Higher Education, Research and Innovation (MESR). Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8180-DAVKRE-007
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to enhance regionalization and laminar organization within cortical-like structures. Through these studies, we seek to advance the development of a physiologically relevant human brain organoid model that more
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cell specification, subtype diversity, and their capacity to enhance regionalization and laminar organization within cortical-like structures. Through these studies, we seek to advance the development
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(reproduction, firing, documentation); • Contribute to the development, updating, and long-term structuring of an interactive ceramic database throughout the project; • Take part in field surveys aimed