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. The objective is to combine ultra-high-precision spatial localization, reduced acquisition times, and access to key photophysical parameters enabling characterization of the local environment of fluorophores
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demonstrated the possibility of studying several parameters (speed, frequency of stops, etc.) in neuron cultures using the fluorescence of NV centers in diamond nanocrystals (NCs). These are internalized
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, while preserving ultimate precision in single-molecule localization and access to key photophysical parameters (fluorescence lifetime, brightness, molecular dynamics). This approach paves the way toward
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on the distribution of As, Bi, and W in different fractions that are more or less mobile depending on changes in the physicochemical parameters of the environment. All of these results will provide a better
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properties in order to hinder their presence. Goal of the project: • Identification of the intermediate species • Understanding their synthesis mechanisms and parameters during the fuel cycle • Presenting a
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symmetries, and to formulate approximate theories and numerical methods that preserve conservation laws. -Examine the potential for these theories to be of use for the studies of waves, instabilities, multi
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instruments; a computer and scientific data processing software; access to CNRS databases and documentary resources. Key stakeholders: The UTINAM teams (researchers, postdoctoral fellows, engineers, and
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hundreds of hours of exposure) in order to estimate systematic errors. - Develop open-source analysis pipelines for extracting diffuse emission from objects with very low surface brightness. Take into
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-vacuum lines, GC and GC–MS, IR and UV–visible spectrometers, liquid- and solid-state NMR spectrometers, etc.). A computer workstation will be provided. Occasional travel to Paris or Nancy may be required
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supergravity solutions dual to strongly coupled gauge theories in 4 dimensions. The other is to construct new coherent truncations in which to determine new solutions of interest for AdS/CFT duality. 1) Use and