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been contributing for the past twelve years in the development of cryogenic pulsating heat pipes (PHPs), also known as oscillating heat pipes. PHPs are two-phase passive heat transport devices patented
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for analyzing how landscapes evolve over time. This thesis is part of the ANR GEvoK (Geographic Entities Evolution in Knowledge Graphs) project, which aims at automatically detecting and semantically
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framework, covering a wide spectrum from RANS approaches to high-fidelity LES with automatic mesh adaptation. In parallel, recent work has led to the development of multi-fidelity modeling strategies
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development remains limited by the difficulty in obtaining crystals with high structural quality, specifically with a stacking fault density below 500/cm². The Travelling Solvent Method (TSM), which uses a
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and future mechanisms in the evolution of the Earth's climate and external environment, using observations and modeling exercises. The PhD thesis is funded by the French-Brazilian (ANR-FAPESP) AMACLIM
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using isotopic exchange and solid-state NMR, and the investigation of the influence of microbial activity on the evolution of these properties. The PhD work will involve: Setting up controlled incubations
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development. The next step is to incorporate the evaluation of trajectory parameters (Track Fit) into this process. A promising approach involves regression using Transformers, which have shown excellent
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drugs. These applications involve collaborative projects with industry partners (already funded) or academic partners. For these three examples, this metrological approach to sensor development involves a
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capacities (around 280 IT) in all the major fields required to design, develop / implement the experimental devices necessary for its scientific activity, as well as the design, development and use
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consortium comprising Thales, the CEA, and the CNRS (through its two laboratories, LULI and CELIA). In this context, LULI is responsible for several work packages, including the development of innovative laser