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MGE. The successful candidate will develop molecular, genomic and evolutionary approaches to better understand how MGE mediate resistance against, and coevolve with, virulent phages in Escherichia coli
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that overcomes the yield limitations of existing betavoltaic sources. The aim of the contract is to develop GaN or AlGaN nanowires with a high form factor using a top-down approach, this step being key
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astrophysics including processes associated with compact objects and black holes and the exploitation of the SVOM mission, galactic archeology including exploitation of the Gaia mission, galaxy evolution and
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language of the selected branch/selected linguistic area, based on a corpus of recordings with traditional beekeepers and based on data collected with the help of questionnaires developed by the research
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of early-career scientists, aiming to develop innovative and sustainable materials for health and medical technologies. The selected candidate will contribute to advanced research projects on functionalized
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to develop calibrated photochemical approaches to modulate the human skin extracellular matrix. The main mission will be to evaluate the effects of sublethal photodynamic therapy on skin tissue remodeling
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developing switching circuits based on phase change materials (PCMs). The research will primarily consist of performing electromagnetic simulations of N-to-M switching circuits of increasing complexity
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model, they will quantify the atmospheric lifecycle and global impacts of microplastics. - Run and use the GEOS-Chem global model using a specific verion developed with the lifecycle atmospheric
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research, the FSTM seeks to generate and disseminate knowledge and train new generations of responsible citizens in order to better understand, explain and advance society and environment we live in. Your
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the development of flexible nanozeolites. This position offers a unique opportunity to explore the structural dynamics of nanozeolites under varying conditions and contribute to advancing green