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group (https://theochem.univie.ac.at/ ) at the Institute of Theoretical Chemistry aims at understanding chemical phenomena using contemporary computational and theoretical methods. We employ and extend ab
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chemical phenomena using contemporary computational and theoretical methods. We employ and extend ab initio quantum chemistry to understand and predict structure and reactivity in the ground and electronic
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. The instructor will be a subject matter expert in relation to ab initio pilot instruction. To be successful in this position, you will have: Demonstrated experience in conducting ab initio flight training, and
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using contemporary computational and theoretical methods. We employ and extend ab initio quantum chemistry to understand and predict structure and reactivity in the ground and electronic excited states
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dynamics or ab initio methods). You have demonstrated the ability to think across scales, from the molecular level up to the field scale. We are seeking a candidate with a strong interest in geochemistry and
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Maxwell’s equations – strong foundations in quantum electrodynamics (QED) are a significant bonus. The role of SRF will focus on developing ab initio theory and developing software to describe and study
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approaches, including sophisticated all-electron treatments. The final phase of the project will be to apply the resulting basis sets in molecular calculations, including ab initio thermochemistry and ab
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-film solar cells. LightTrap covers the entire discovery chain, from ab initio calculations and photonic simulations to materials synthesis and nanostructuring, all guided by advanced AI algorithms
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into hydrocarbons. You have proven expertise in modeling reaction and diffusion processes in nanoporous materials. You have proven expertise in ab initio molecular dynamics simulations of chemical reactions in
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. Correlated experimental, ab initio and multi-scale techniques are central to our mission: Development and application of advanced simulation techniques to explore and identify the fundamental structures and