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species in the interphases for an in-depth understanding of the electrochemical processes that govern the next generation battery performances. Such a major effort is intimately linked to the use
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have recently appeared to be a strong candidate as seed phenomena for SBs generation. The overall objective of the JET2SB project is to address the following questions: Do, and to which extend, solar jet
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study of interacting electronic models coupled to photons, aiming to both probe and modify electronic properties. Another exciting avenue is the use of cavity coupling to induce effective electron
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experiments: Combining gastruloids at different stages of differentiation to study the impact of heterogeneities on EMT transitions and collective behaviors. • Spatiotemporal activation of TBRA: Use
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sites, to quantify the effects of land use and climate change on this evolution, and to extrapolate findings to regional, continental, and finally global scales. Objectives The postdoc will focus on past
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implemented using a lens doublet that introduces a tunable radial delay. A more advanced, programmable method would be to use a large-aperture spatial light modulator (SLM) to impose tailored spectral phase and
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postdocs, and strong regional and international connections, with collaborations with the University of Geneva and CERN. Terms of Employment : The appointments are expected to be for two years, with
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employment opportunities. Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UMR5300-NICBRU-004/Default.aspx Requirements Research FieldHistoryEducation LevelPhD or equivalent Research
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organic carbon. He or she will implement an innovative methodology combining in situ spectroscopy and physicochemical modeling. He or she will use various Raman spectroscopy and synchrotron X-ray
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Shell Model with Continuum and its extensions to construct high-fidelity microscopic optical potentials, designed for use in few-body reaction formalisms, in particular Faddeev-type calculations targeting