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by anion exchange (carbonation) and ion chromatography - Characterisation of natural samples containing layered double hydroxides using electron microprobe, spectroscopic methods (Raman, infrared) and
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application that provides ethics risk prevention assistance based on this knowledge. The methods and technics that will be used (for ex.: LLM+RAG and/or ontologies and/or case-based reasoning) are to be
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features to behavior using GLMMs/Bayesian models; conduct sensitivity and robustness checks. * Method validation: benchmark alternative pipelines (filters, burst detectors, forward/inverse models); perform
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methods (NMR, DSC, FTIR, DLS) - Obtain films from nanoparticles - Conduct experiments according to specifications - Interpret, exploit, and present results This project is a collaboration between an
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the specificity of each ABC-F. To obtain a comprehensive understanding and to limit risks, we propose a two-pronged approach combining global in vivo and in vitro methods. The in vivo methods are intended
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on the development of innovative methods and processes for the synthesis, shaping, functionalization, and biofunctionalization of materials, as well as the development of specific and/or customized characterization
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considered under-studied today, see UNESCO report, 2020). • Bibliometric research based on a method of identifying field sites in publication corpora. • The production of world maps highlighting
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and fluorescence microscopy. The host team, “New Synthetic Methods for the Chemistry–Biology Interface,” is part of the CNRS UMR8601 unit, “Laboratory of Pharmacological and Toxicological Chemistry and
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aspects of artistic know-how in the field of digital graphic creation, to explicitly model them in algorithmic form, and to integrate them into state-of-the-art artificial intelligence methods for image and
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, France (UMR 7361). Research at IS2M focuses on the development of innovative methods and processes for the synthesis, shaping, functionalisation and biofunctionalisation of materials, as