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experiments and will benefit from a highly collaborative research environment. This work is part of an international collaboration bringing together several leading laboratories in the field of ion trapping
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catalytic reactions operating at elevated temperatures. The use of selective (localized), rapid, and in situ heating of the reaction medium has the potential to significantly improve both the energy
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capable of automatically selecting the simulation strategy best suited to a given prediction objective, while optimizing the trade-off between accuracy and computational cost. The work will build on multi
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to different aspects: - conception, mplementation and optimization of the optical experimental device - programming - characterization on different samples - sample preparation - writing of articles
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), within the ATLAS group. The PhD student will join a large-scale international collaboration and participate in the activities of the ATLAS experiment at CERN. The work will focus on the analysis of data
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orally. - Be able to work both independently and collaboratively within an international team environment. Mechanistic Study of Radionuclide Lability and Reactive Site Accessibility in Soil Insoluble
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: • To design and optimize an electrolyzer that simultaneously promotes mass transfer, contaminant degradation, and gas recovery; • Study the influence of operating parameters (current density, reactor geometry
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understanding and enable the optimization of catalysts and experimental conditions. More specifically, the student selected for this position will be tasked with mapping the MHAT reactions of alkenes by
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a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Work environment : This is a highly interdisciplinary project at the interface between
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of the situation, the thesis objectives are organized into two main parts. The first part involves developing a cooperative system at the operational level between the autonomous driving system and the human driver