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department at IETR in inkjet-printed OTFT fabrication and is part of the ANR-funded SMOOTH (Stable Metal-free Organic transistOrs Thanks to Homojunction) project, which will start in February 2025 and run
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by N. Perret and co-supervised by L. Djakovitch. N. Perret is specialized in the development of supported metal catalysts for hydrogenation and oxidation reactions. The project BioMCat, which focuses
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are minimally invasive, orally delivered medical devices that traverse the gastrointestinal tract, using electronic, mechanical, or smart material elements for diagnosis, therapy, surgery, or sampling
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problem caused by unidirectional replication initiation in the proliferation arrest induced by DciA depletion. The thesis work will be divided into two parts: (i) analysis of the consequences of DciA
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conditions. Profile: Required degree: Master's (M2) in Ecology and Evolution - Specialization: Modeling in ecology and evolution, theoretical ecology Expected skills: - Statistical analysis - Mathematical and
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., valves); - Development of a coupled simulation tool, integrating the expander model with the linear alternator model developed at IES; - Parametric simulations and sensitivity analysis to assess
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-insulator transitions, etc. The second area includes activities relating to "nanoscience" in the broadest sense. These are approached from the perspective of fundamental properties, when the dimensions
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relative near-absence near Earth orbit and beyond, SBs are considered a key ingredient in the complex mechanisms of solar wind generation. Solar jets, very commonly observed phenomena in the solar atmosphere
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bench (optical, electronic and mechanical) and multiphysics analysis using high-performance on-site instruments (optical spectrum analyzer, 3D intensity profile, wavefront, RF spectrum, field polarization
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instrument that will allow the analysis of mesoscale thermal processes under highly controlled experimental conditions in order to understand the fundamental nature of heat transport and to measure the thermal