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as promoters and enhancers. In this thesis we would like to address why, when PRDM9 is present, DSBs take place at hotspots rather than at FE. One factor that could be involved in this choice is MEI4
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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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ecophysiology, soil health and the water cycle, as well as its impact on human health in relation to microclimates and air quality. The thesis is an important component of this multidisciplinary project and will
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resources to carry out the PhD project. This PhD is part of an interdisciplinary research project, involving mathematicians, molecular biologists, parasitologists, and philosophers from France, the
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PhD student (M/F) in Polymer Chemistry: Synthesis of cross-linkable, degradable and recyclable latex
of degradable polymers and the re-emulsification of degraded fragments to repolymerize them into an emulsion has never been carried out. This thesis is part of the collaborative research project DYNAMIC-LATEX
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electrospinning devices, as well as structural characterization tools (microscopy, X-ray, spectroscopy), and mechanical and rheological equipment. Context This PhD is part of the ANR FLIGHT project, which aims
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equipment, particularly in imaging and electron microscopy, image analysis, and bioinformatics. The team is composed of five people. The thesis will be carried out as part of a collaborative ANR project
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oxidation of cinnamic derivatives in liquid phase. In the first part of the project, we will focus on the catalytic oxidation of ferulic acid to vanillin. We want to investigate the influence of synthesis
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) as part of the tunable high-coherence opto-THz structured source project for applications of interest. The Institute of Electronics and Systems (IES) is a research laboratory affiliated with
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of such high-performance fiber laser platforms requires advances in the development of high-reliability fiber components and optimized doped fibers. The first objective of this PhD project is to explore