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: - EPI: interfacial electrochemistry; physicochemistry of surfaces and interfaces; electron spectroscopies - SORG: catalysis and heterocycles; fluorinated compounds and photo-induced processes; molecular
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electrochemistry, surface chemistry, organic molecules for electronics and energy storage, and bioelectrochemistry. • The project is coordinated by Dr James Behan, CNRS researcher at the ISCR. • The thesis will be
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letter - academic transcripts for Master 1 and Master 2 (or equivalent) - the name and email address of two references. An initial selection will be based on the evaluation of the submitted documents
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of complex coacervate core micelles. The latter will be prepared and characterized thoroughly both in bulk and at the interface using scattering techniques and cryo-transmission electron microscopy in
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8029) bringing together researchers, engineers and doctoral students across a broad spectrum of electrical engineering topics, including electronics, electrical energy systems, signal processing, and
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efficiency Optical neuromorphic computing is emerging as a promising alternative to classical electronic architectures, offering advantages in terms of speed, energy consumption, and parallelism. Nonlinear
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Jupiter's polar regions using computer simulations. The core of the project consists of coupling a photochemical model (developed and used in numerous planetary applications) with an electron transport model
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manufacturing of nacres, properties of the materials). Know-how in material characterisation techniques (XRD, TGA, DLS/Laser granulometry, electron microscopy) and/or in rheology of suspensions is required
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using this module in the model bacterium Escherichia coli. Redox titration approaches coupled with EPR (Electron Paramagnetic Resonance) spectroscopy techniques will be used to stabilize and study the
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for cryo-electron microscopy (cryo-EM) data analysis, modeling conformational heterogeneity, and identifying optimal binding candidates, by integrating image analysis and docking across multiple structural