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are: • To conduct an exhaustive literature review to consolidate the existing state of the art within the research team in the field of neuroprostheses • To study and define 'signature' electrical signals associated
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). The MeCSE team is interested in the use of sustainable resources for the design of chemical products. The strategies implemented by the team aim to combine renewable electricity and abundant synthons in
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). The MeCSE team is interested in the use of sustainable resources for the design of chemical products. The strategies implemented by the team aim to combine renewable electricity and abundant synthons in
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, temperature, humidity) and the equipment used (thermal conductivity, roughness, wetting properties). - The theoretical approach will be used to complement the experimental approach. It will enable friction
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exothermic chemical reactions. However, current materials suffer from the irreversibility of the reactions involved, which hinders their large-scale application for industrial decarbonization. Improving energy
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particularly stimulating research environment at the interface of water sciences, Earth observation, and artificial intelligence. The PhD student will have the opportunity to work on current challenges related
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of electrical charges at extremely small scales. However, these processes occur in trillionths of a second, far too fast for current methods to capture. The ERC-funded UltraWave project aims to overcome
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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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the fiber-fiber bonds mechanics using physical and chemical processing routes. The recruited postdoctoral researcher will contribute to this project. She/He will be in charge of (i) characterizing
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? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The PhD work will be carried out within the EMPRe team (https://dcm.univ-grenoble