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Inria, the French national research institute for the digital sciences | Rennes, Bretagne | France | 2 months ago
institute of the Rennes University (IRMAR). The team expertise encompasses mathematical (stochastic) and numerical modelling of ocean flows, observational and physical oceanography, data assimilation and
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computational tools (mainly in-house LBM code) for multiphysics simulations involving: heat transfer multiphase flows sorption kinetics The overall objective is to improve the understanding and optimization
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recruited for this position will be responsible for analysing disassembling work activities and related workplaces, within existing recycling channels and highlighting the current organizational work
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function based on a coupled NEMS network, consisting of 2 or more double-drum resonators. This is beyond current state of art and relies on deep understand of more degrees of nonlinear complexity
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contract and its rethinking for our time. It aims, over a three-year period, to develop original, innovative, integrative, and open research, in dialogue with non-academic stakeholders. Re-Contract seeks
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molecular biology, as well as in preclinical mouse models, to investigate th e role of osteoprotegerin in th e path ogenesis of osteosarcoma. Th is position is offered for a period of 3 years. This project is
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LanguagesENGLISHLevelGood Research FieldNeurosciences » Neurophysiology Additional Information Benefits The current job offer comes with the following benefits: - postdoctoral contract (24 months) - A monthly gross salary in
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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 2 months ago
the current limitations of existing T2V systems. A core focus will be on achieving fine-grained conditional generation via post-training with Reinforcement Learning (RL), allowing users to specify complex
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models, flow cytometry, confocal microscopy and unbiased approaches such as single cells transcriptomics, spatial transcriptomics and epigenetics to characterize molecular and cellular mechanisms. Using