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to develop chiral metal nanoclusters, understand their chirality at the atomic level through a combination of advanced spectroscopic techniques and theoretical simulations, and apply them to relevant processes
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climate-neutral economy while offering PhD candidates a unique opportunity to be at the forefront of Europe’s sustainable energy transformation. The open position is: DC8: Modeling and simulation
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environment featuring a wide range of research activities, including QM/MM simulations, ionic liquid simulations, and excited-state characterization. The aim of this PhD thesis is the atomistic modeling
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experience (e.g., teaching), language skills, and other skills relevant for the position A copy of original diplomas (Bachelor’s and Master’s degree or equivalent). A writing sample (e.g., master’s thesis
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talented doctoral students to develop chiral metal nanoclusters, understand their chirality at the atomic level through a combination of advanced spectroscopic techniques and theoretical simulations, and
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their chirality at the atomic level through a combination of advanced spectroscopic techniques and theoretical simulations, and apply them to relevant processes in biomedicine and catalysis. Thanks to the synergy
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be done via computer simulations, including Monte Carlo and molecular dynamics, combined with the use of statistical mechanics to predict e.g. phase transitions, nucleation rates, etc. The work will be
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management. Perform “coupled” characterization with hot air to assess the overall performance of the MDAL. Task 4: Integration into Two Energy Processes Experimental validation, numerical simulation, and
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modelling or numerical simulations. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7342-MARBRA-012/Candidater.aspx Requirements Research FieldEngineeringEducation LevelPhD or equivalent
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, including M.Sc. thesis, if available Copy of up to three selected publications, if available Copy of academic degree/diploma (if available) and/or academic transcripts (course grades / subject scores) at