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investigates the reproducibility of HP data processing pipelines using large language models (LLMs) to replicate published computational results. According to Starace et al. (2025), the state of the art in AI
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operating currents and conductors composed of multiple REBCO tapes in parallel. It is therefore necessary to develop experimental and numerical study capabilities for quench dynamics in REBCO conductors and
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of the MOST (Modelling and Simulation of Turbulence) team focus on the numerical prediction of turbulent and multiphase flows with a broad range of objectives from fundamental understanding of flow properties
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experimental methods are available and currently fully operational in the laboratory. Collaborative Environment: Centrifugal instabilities are not limited to magnetized plasma columns in the laboratory but also
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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | 3 months ago
all their advantages observed and demonstrated in the litterature, developing these robots comes with challenges such as the presence of singularities and elastic stability deficiency, models with high
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). The work plan includes: . A detailed literature review on boiling flow regimes and their modeling. . The enhancement of the ConBo experimental setup with the integration of a Wire Mesh Sensor (W) to measure
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Inria, the French national research institute for the digital sciences | Villeurbanne, Rhone Alpes | France | about 1 month ago
. Knowledge of Large Language Models, agentic AI, privacy-enhancing technologies, or information-flow analysis is a plus. Interest in experimental research, system implementation and rigorous evaluation. Good
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the laboratory of Prof. Valérie Paradis, internationally recognized for liver pathology and human precision-cut liver slice models. The student will benefit from a highly interdisciplinary environment combining
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matter. The diversity of the topics we study allows us to tackle both long-standing and emerging problems by combining modeling and experimentation at the highest level. Located on the Monod campus
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environments. More specifically, this PhD project belongs to the research theme "Radiolysis at Interfaces", currently developed within the MATICE group. The work will be conducted in close interaction with