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to investigate the parameters that control the triggering, speed and geometry of magmatic intrusion events at mid-ocean ridges, using dynamical models constrained with seismo-geodetic observations
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properties of materials before and after their use under extreme conditions, either in nuclear installations (fission and fusion) or on a high flux test facility, or after controlled modification in
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Machine Learning; Expertise in Expert Systems; Good command of French (spoken and written) and English (spoken and written). Skills: Proficiency in object-oriented programming (Python, Java, JavaScript
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allows in situ (with temperature and light control) and operando (under applied polarization) measurements, to study not only materials in their original state, but also devices. The team is looking
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of main control parameters as well as different patterns and amplitudes of the heat flux on the outer boundary. The candidate will analyze these simulations to establish the dependence of the dynamo regime
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Research Environment: Leverage world-class facilities at Laboratoire des Solides Irradiés, including a specialized electron irradiator for controlled materials disordering. · Professional Growth
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- Ability and interest in conducting experiments in a controlled environment (tank experiments) - Knowledge of Matlab or Python required - Knowledge of numerical simulation software such as Comsol
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for nearly 30% of French national greenhouse gas (GHG) emissions, with around 94% originating from road transport alone [1]. This dominance is explained by the central role of road transport in France, which
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operating in the short infrared (i.e., up to 2.5 µm) as well as in the mid-infrared (3–5 µm). We are particularly interested in controlling the light-matter interaction in these components by introducing
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interpretation of experimental results. He/she must also have skills on the processes for producing ceramic oxides with controlled microstructure. He/she must be capable of carrying out structural and