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, opportunities and effectiveness of methods for quantifying the environmental impacts of AI The following activities are expected: - conduct between 10 and 20 semi-structured interviews on the ecosystem of French
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to unravel the atmospheric importance of this interfacial chemistry by means of (i) laboratory-based investigations, (ii) field observations and (iii) modelling. These activities will take place in the frame
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on the ANR project MetaTime, funded by ANR. This project involved all the members of the "Control Timing and Action" research team of the "Center for Research in Psychology and Neuroscience" (UMR7077, amU
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will be: * Experimental work on polymer synthesis and characterization * Supervision of interns * Participation in the scientific activities of the laboratory's two teams * Writing scientific articles
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well as their electrical characterisation. His/her role will involve overseeing all nanofabrication activities within the project, including the development of new cleanroom processes, as well as training PhD students in
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ingredients for Earth-like magnetic fields on millennial time scales in dynamo models. The research activities are two-fold. First, the candidate will run numerical dynamo simulations with various combinations
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with experimental groups. The activities will be centered on engineering of topological states for photonic modes, including non-linear and non-Hermitian effects. Another crucial ingredient will be
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to assess performance in hypoxia models and radiotherapy contexts. Participate in publications, patents, and start-up development activities. The work will take place within the framework of the Project
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, at least through publications and conferences. He/she will actively participate in the life of the laboratory. The work will be carried out at the Solid Mechanics Laboratory, a joint unit between the CNRS
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for the modulation of their optical properties under an applied voltage. The EC- LIPSE projet concerns the eco-design and development of innovative sustainable methods for the fabrication of efficient optically active