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(approximately 280 engineers and technicians) in all the major fields required to design, develop, and implement the experimental devices needed for its scientific activities: mechanics, electronics
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approach combining eco-acoustics, physiology of hearing, anthropology and population genomics, the aim of the project is to explore the interactions between environmental and genetic factors involved in
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leveraged to improve existing modulation models describing how large scales alter heat transfer. Optimal oscillations will be designed using reinforcement learning. Extending inner-outer interaction models
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et Territoires) team—recognised as an Équipe Mixte de Recherche (EMR) by CNRS—focuses on the multi-scale modelling of solar energy systems, their interaction with urban environments, and the coupling
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diagnostics based on Terahertz spectroscopy.The work will involve a rich variety of topics encompassing plasma/material interactions studies, material/plasma reactor optimization, as well as the design and
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research will be more specifically integrated into the "Collective Chairs" (COCHAIR) targeted project. These chairs are designed to strengthen the transversal scientific activities of the IRiMa Risk Program
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of Bordeaux). The student will join the group of Nicolas Bachelard, whose activty focuses on quantum optomechanics. Optomechanics explores the interaction between light and mechanical vibrations [1]. As a
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cutaneous wounds. Through its research and training activities, the REMOD-HEALING project will contribute to scientific advancement and innovation in wound healing and regenerative medicine through a
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, the successful candidate is expected to contribute to: the creation of a database of translation material in 1000 French and British periodicals; the establishment of a prosopography; 1 interactive map
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for modelling protein structures and protein-ligand (metabolite) interactions. Using multi-scale molecular models, we aim to predict the structural features of gibberellin (GA) transporters, a key phytohormone