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institute in materials science and advanced characterization. The candidate will have access to the FastNano Liquid platform, enabling operando monitoring of PISA processes through SAXS and Raman spectroscopy
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of processing routes for advanced ceramics and surface treatments, with the aim of developing materials and components with tailored properties for demanding applications. SAFRAN is a leading French international
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CNRS 6144), a leading laboratory in process engineering, particularly in electrochemical engineering for environmental applications such as water treatment and reuse, as well as the valorization
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(bbγγ) channels. In the classical HH(bbγγ) analysis, the H(γγ) channel is treated as a major background process for the di-Higgs channel. A joint analysis of both modes would optimize the overall
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of single molecules using a temporal approach thanks to an original shaping of the illumination field. This paradigm shift in the process of localizing single molecules will enable us to gain a factor of 3 in
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dedicated, low-energy electron beam ion trap (EBIT) optimized for the production of highly charged ions of light nuclei that remain beyond the reach of storage rings. This EBIT, a central element of the
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and 3D finite element modelling (COMSOL, CST) of the optical control process for materials. -Integration of the optimal compositions into simple test structures to directly evaluate electrical switching
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to the lab's research aimed at understanding how polyploid cells regulate their optimal size while maintaining their function. This effort is part of the lab's broader project to study ploidy transitions
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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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controlling the long-term fate of naturally occurring radionuclides within this matrix remain poorly understood. In particular, the processes responsible for the progressive decrease in their mobility over time