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models that bridge the gap between laboratory settings and natural environments. It fits with Sustainable Transitions axe of the TIRIS program (https://anr.fr/ProjetIA-22-EXES-0015 ), addressing challenges
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activity of the MOLTECH-Anjou Laboratory focuses on the development of molecular materials, whether organic or hybrid organic-inorganic, supporting high-visibility research areas such as organic electronics
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Inria, the French national research institute for the digital sciences | Villeurbanne, Rhone Alpes | France | about 1 month ago
the development of agentic artificial intelligence systems. Unlike conventional conversational systems, AI agents can generate action plans, invoke external software tools and APIs, communicate with other agents
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static mode and under photonic excitation in order to establish the reference electronic state of the surfaces and to monitor its evolution. THz spectroscopy will then provide access to the conductivity
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damage mechanisms governing shell failure. The results will lead to the development of predictive design rules and digital tools to support high-throughput investment casting strategies. In the longer term
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photonics and nanoelectronics, notably the development of components and systems for quantum information processing. The PhD will develop in several directions, all of them being entirely origina: • We will
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The PhD candidate will be recruited within IJCLab (http://ijclab.in2p3.fr
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hypothesis is that seismicity serves as an observable proxy for the coupled processes linking deformation, permeability evolution, fluid circulation, and hydrogen generation. The strategy consists
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be carried out in collaboration with Jérôme Chanut, the lead developer of the NEMO model's numerical core at Mercator Ocean International. The NEMO Research & Development team at LOCEAN investigates
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Evolution Under Ion Irradiation using transmission electron microscopy. In situ transmission electron microscopy (TEM) is a powerful characterization technique that can be used to provide a comprehensive