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at LAPP. The research conducted at LAPP aims to study the physics of elementary particles and their fundamental interactions, as well as to explore their connections with the large-scale structures
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environments. More specifically, this PhD project belongs to the research theme "Radiolysis at Interfaces", currently developed within the MATICE group. The work will be conducted in close interaction with
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the European Research Council and obtained under the ERC advanced grant scheme. See https://www.inshs.cnrs.fr/en/node/5353 , and https://iode.univ-rennes.fr/actualites/gaetan-cliquennois-laureat-dune
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, there is a strong demand for the development of non-invasive methodologies, able to probe chemical gradients in the vicinity of individual nano objects in operando conditions. In this PhD thesis, we plan
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electrophysiological complexity of the human gastrointestinal tract in order to investigate intestinal infectious diseases and host–pathogen interactions. Within this framework, the NCM (Nanobiointerfaces and Conductive
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–plasma interactions, and laser-driven particle accelerators. It brings together approximately 80 researchers, faculty members, engineers, PhD students, and postdoctoral fellows. The LOA conducts research
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. Jose Moran-Mirabal's laboratory at McMaster University (Canada), internationally recognized for advanced biomaterials and hydrogel engineering. The successful candidate will participate in the design and
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, proficiency in English is essential. Membrane Traffic and Morphogenesis: Quantification of Membrane Flows in Embryonic Tissue Development Tissue morphogenesis results from the complex interaction of mechanical
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microscope. The objective is to investigate the characteristic lifetimes of excited states in individual molecules and interacting molecular systems. This approach will enable the study of their optical
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, electron microscopy, X-ray diffraction, etc.). Methodology: • Design and synthesize model substrates to measure the activity of enzyme mimics. • Develop analytical methods to detect and quantify chemical