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tickets, etc. -Twisted multi-layered stacks of graphene have attracted a very strong interest these last years, in part because of the very rich phase diagram at low temperature, displaying many transitions
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parameterization of turbulent transport in this astrophysical context remain open questions. This thesis will be part of a joint research program with colleagues in Toulouse (Laplace and IRAP) and Marseille (PIIM
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for projections. This project aims to explore the coupling of the ocean and ice-sheet model components via a machine learning emulator of ice-shelf cavity circulation. While the ultimate goal of the project is to
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wastewater reuse, resource valorization, and process scaling. The project is part of a strategic collaboration between the CNRS and the University of Sherbrooke (Quebec, Canada), renowned for its expertise in
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coherence time. This PhD thesis is part of a long-term compact optical clock project based on the Yb+ 435.5 nm transition frequency, with a target fractional frequency stability below 10-14 at 1 s and less
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regime. Second, the thermomechanical stresses exerted on the receiver tube—which have a direct impact on its lifespan—also vary with the flow regime. In particular, when part of the receiver tube dries out
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properties of this protein, as well as its interactions with other cellular components. The obtained results will be compared with available experimental data, in collaboration with our partners. We
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possible to link these observations to the physical components of the network despite uncertainties and missing data. The second stage will aim to integrate all available information into a common knowledge
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data from the Simons Observatory to extract the kinetic Sunyaev-Zeldovich contribution from the CMB power spectrum This contribution will then be modelled as two distinct components: the local kSZ signal