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) / InP contact layer (200 nm) / Si substrate The objective of the project is to develop a plasma etching process for this multilayer stack, enabling selective etch stopping on the InP contact layer, which
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in the framework of the BBEST PEPR. The project aims to valorise syngas derived from biomass via the OX-ZEO process. This relay catalytic process combines a hydrogenating metal oxide to produce
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offering a postdoctoral position to strengthen its activities on the ATLAS experiment at the Large Hadron Collider (LHC) at CERN. The selected candidate will work within L2IT. His/Her work will focus
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mixtures, including information retrieval, random access, approximate search, querying and filtering, encryption, compression, and many other information-processing tasks. Our team is looking for a talented
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benefits from its proximity to the University of Geneva and CERN. Terms. Position 1 is a two-year appointment; Position 2 is a three-year appointment. Salary on the USMB scale, commensurate with experience
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: Understanding of the principles of atmospheric modeling, particularly using WRF-Chem. Knowledge of the physical and chemical processes simulated in the model, including cloud microphysics and interactions with
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students and 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
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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 the possibility of renewal
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. In parallel, the post-doctorant will be associated as co-local contact to studies of other quantum materials using his/her compensated-coil magnetization probe, in collaboration with LNCMI researchers
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framework, covering a wide spectrum from RANS approaches to high-fidelity LES with automatic mesh adaptation. In parallel, recent work has led to the development of multi-fidelity modeling strategies