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, contribution to supplementary health insurance, continuous professional training. To support the transition to more sustainable polymers, the PhD student (m/f) will develop a new generation of dynamic polymer
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the developing cortex and play a crucial role in establishing proper cortical regionalization and lamination. Distinct CR subtypes are generated at signaling centers in response to morphogens and participate
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(LIG), a 450-member laboratory with teaching faculty, full-time researchers, PhD students, administrative and technical staff. The mission of LIG is to contribute to the development of fundamental
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signalling center origins - To work on the molecular profiling of tissues and cells from human stem cell-derived brain models - To develop molecular insights about key morphogenic pathways responsible
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of the specificity of the interaction site toward different types of quinones with varying structures and redox potentials, in connection with the evolution of bioenergetic mechanisms. The proposed project is
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engineering models for large-scale quantum computers. The aim is for this thesis to develop fundamental expertise in quantum physics and computing, and then share it with other teams in the Q-loop project, so
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'Catalysis for Energy Transition' (CATREN) and is led by Dorothée Laurenti and Laurent Piccolo. This thesis project focuses on the development of catalysts for the hydrogenation of CO/CO₂ into methanol, and
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boundary layer. The candidate will first deploy a multivariate emulator of key variables governing Arctic sea ice dynamics, trained on high-fidelity simulations developed at IGE. This emulator will be
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waste, biomass byproducts, nitrogen oxides, etc.) into valuable chemicals and developing renewable hydrides, with the goal of closing the carbon and nitrogen cycles and promoting a circular economy
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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