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necessary for its scientific activity, as well as the design, development and use of instruments. The PhD student will work in the RAPHYNEE (RAdiochemistry and PHYsics for Nuclear Energy and Environment
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: • To design and optimize an electrolyzer that simultaneously promotes mass transfer, contaminant degradation, and gas recovery; • Study the influence of operating parameters (current density, reactor geometry
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, and optimizing cleanroom-based micro- and nanofabrication processes dedicated to the fabrication of these MEAs; Integrating the developed bioelectronic devices into microfluidic organ-on-chip platforms
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participate in the design, fabrication, and optimization of van der Waals heterostructures and related electronic devices. The work will involve micro- and nanofabrication techniques as well as the assembly
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networks). • Compare different strategies (topology, tensor order…) to seek for an optimally compressed representation of turbulent velocity fields and of relevant operators in tensor network form. • Perform
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young researchers in connection with the École Doctorale du Pacifique, disseminate results to society, and optimize resources by pooling equipment and means. Thus, the PhD student will have privileged