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on fluctuation of fluorescent molecules methods as they don’t need any specific materiel or fluorophore. The super-resolved image reconstruction is formalized in mathematical terms as an inverse problem with
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beamline at the ESRF. The analysis and interpretation of the acquired data will require solid proficiency with the various code bases developed on the beamline. The candidate will be trained in the use
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Experience in animal experimentation is a prerequisite. Theoretical and technical knowledge of cellular and molecular biology. Interest in cancer, vascular and/or pulmonary diseases. Proficiency in Image J
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unidirectionnel et un code Maxwell-fluide, sont développés à l'ILM et au CELIA. Le (le) doctorant(e) effectuera des séjours prolongés dans les deux laboratoires afin d'acquérir une formation approfondie et de
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- work environment: Research Laboratory. - main mission: The goal is to design and prototype a Reciprocating Expansion Machine with a Linear Alternator (REMLA – 200W–100Hz – 10mm stroke), coupled with
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kinetic properties associated with a transformation, using artificial intelligence tools * performing molecular dynamics simulations * developing codes to analyze these simulations, using existing
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infrared, historically encompasses astronomy, imaging, remote sensing, chemical spectroscopy, as well as linear and nonlinear condensed matter studies. For all these applications, broadband THz sources
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imager based on a ,high-density array of transparent field effect transistors (GFET) for tracking in-vitro activity evolution in neural networks. The candidate will develop the complete chain, from device
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Imaging applications. The laboratory is located at the interface of Engineering Sciences and Biological Sciences. The laboratory has developed numerous interactions with research teams specialized in
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-dissipative system in which correlations of a quantum nature may naturally arise. We have built a prototype for such a cold-atom-based superradiant laser. We want to tackle the unresolved issue of sustaining