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methods to understand and predict the adsorption, self-assembly, and protective behavior of N-heterocyclic carbenes (NHCs) on metallic and oxidized surfaces. NHCs are promising corrosion-inhibiting
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and academic excellence. Ready to be part of our team? Let’s shape the future together! Where to apply Website https://iventajobdata.eu/bestmedia/img/2293325/1915754/cl/7c7695ab265bad0de8c30
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catalytic oxidation of organic contaminants in water. Working at the interface of materials chemistry, catalysis, and environmental engineering, you will explore synthesis-structure-activity relationships and
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on the development of methods to solve the many-electron Schrödinger equation for fermions and bosons with high accuracy and on the application of these methods to problems in the physics of oxides, semiconductors
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information science, and phases and phase transitions in ferroic materials. RESPONSIBILITIES: Design and execute novel in situ and ex situ electron microscopy studies of oxide materials Publish results in high-impact
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The research for this position is to explore the genesis of oxygenic photosynthesis from an older form of photosynthesis that was non-oxygenic and based on sulfur oxidation. Some cyanobacteria are able
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seeking a highly motivated candidate with expertise in oxide material synthesis under inert atmospheres (Schlenk technique), physical chemistry, CO₂ reduction, and photoelectrochemical cells (PEC
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on the effects of pollutants on ammonia oxidizing microorganisms Good writing and presentation skills demonstrated by presentations in international conferences LanguagesENGLISHLevelGood Research FieldBiological
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of methods to solve the many-electron Schrödinger equation for fermions and bosons with high accuracy and on the application of these methods to problems in the physics of oxides, semiconductors, metals and
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waste, biomass byproducts, nitrogen oxides, etc.) into valuable chemicals and developing renewable hydrides, with the goal of closing the carbon and nitrogen cycles and promoting a circular economy