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needs regarding water resource management and the environmental impact of human activities on these resources. You will join the Numerical Modeling of Aquifers Unit (MNA) and contribute to modeling
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human stem cells for in vitro modeling of neurodegeneration disease. Projects in the lab are at the interface of systems biology and bio-medical research. In particular, we aim at developing novel
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, the missions of the “Integrated Energy Systems » Unit unit are as follows: - Conducting multi-criteria analyses of the integration of the subsurface into the energy transition, and producing systemic models
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regularization. In the morpheme group we have proposed model-driven approach (e.g., COL0RME [1]) as well as model-based data-driven approaches (e.g., GANs [2] or Plug& Play [3]). A different and increasingly
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implementing innovative water accounting approaches on both the supply and demand sides. Main Mission: To develop, calibrate, and validate hydrological models (SWAT, MODFLOW) for two watersheds in Morocco in
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shared reference frameworks as 3D/4D geological models, which underpin thematic studies in water, geo-resources, and energy transition. You will work within this Directorate in the Geology Division, which
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an atomistic model of the electrode/electrolyte interface in the batteries developed by ITEN, at the anode and at the cathode. Both electrodes are based on lithium-based transition metal oxides. The development
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) and Aurélien Quiquet from the Laboratoire des Sciences du Climat et Environnement (LSCE), an expert of the GRISLI model, in interaction with the PhD student on the ANR Delta project (coordinated by Y
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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | 11 days ago
applications have been organized in different steps that interact with each other. The classical first step is to describe the application through a model. Through this model, a first process is operated
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an atomistic model of the electrode/electrolyte interface in the batteries developed by ITEN, at the anode and at the cathode. Both electrodes are based on lithium-based transition metal oxides. These models