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are: Required degree: Ph.D. in a field related to environmental modeling, data-driven modeling of natural systems, hydrogeology, hydrology, etc. Primary selection criteria for teaching activities: Quality
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macrophages toward a pro-inflammatory, anti-leukemic state. The work will combine human monocyte-derived macrophage models, leukemia-conditioned macrophages, primary AML patient samples, chemical biology
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, visiting researchers, master's students, etc.) Research Context Recent advances in mobile robotics have been driven by remarkable progress in perception, deep learning, and control. However, current robotic
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our bioengineering-driven team and lead this effort, with the following core objectives: Explore the introduction of macrophages and other immune cells on the currently available Lung-on-Chip model
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STLO) (https://eng-stlo.rennes.hub.inrae.fr/ ). This work is part of the “Predicting the browning of dairy powders by kinetic modeling of Maillard reaction and caramelization during drying and storage
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will develop a mathematical framework connecting these two systems. Starting from minimal nonlinear dynamical models, the student will investigate state-space structure and attractors, local stability
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interactions and treatment of apicomplexan parasites, including Cryptosporidium and Toxoplasma gondii. What we offer • A 24-month fully funded postdoctoral position ; • a discovery-driven research project
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electronics and electrical energy storage and conversion devices, within the EM3 team (Electronics, Microelectronics and Modelling for Multidomain Systems) of the UMR ICube laboratory. Grounded in a systems
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to understand deformation-controlled hydrogen systems by integrating seismic observations and THMC physical modeling at three complementary sites: Comminges (primary target), Oman, and New Caledonia. The central
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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 SuperNEMO project is driven by an international collaboration of a hundred