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and reduction reactions. The research will focus on: Developing synthetic routes to robust new chelating and bifunctional ligands. Employing advanced spectroscopic, electrochemical and X-ray diffraction
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x-ray photoemission spectroscopy. This includes a newly established near-ambient-pressure XPS facility (NAP-XPS). In the MAGNESIS project we will specifically work towards understanding and
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x-ray photoemission spectroscopy. This includes a newly established near-ambient-pressure XPS facility (NAP-XPS). In the MAGNESIS project we will specifically work towards understanding and
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for oxidation and reduction reactions. The research will focus on: Developing synthetic routes to robust new chelating and bifunctional ligands. Employing advanced spectroscopic, electrochemical and X-ray
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weather, upper atmosphere physics, and cosmo-climatology, as well as development of instrumentation, in particular high-energy instrumentation, i.e. X- and gamma ray detectors and optics. The division is
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weather, upper atmosphere physics, and cosmo-climatology, as well as development of instrumentation, in particular high-energy instrumentation, i.e. X- and gamma ray detectors and optics. The division is
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quantification of microbial Infections of Plant tissues”. This project aims to understand how root nodules are colonized by rhizobia using X-ray tomography and advanced image analyses. The postdoctoral candidate
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quantification of microbial Infections of Plant tissues”. This project aims to understand how root nodules are colonized by rhizobia using X-ray tomography and advanced image analyses. The postdoctoral candidate
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throughput metal nano particle material synthesis and characterization Comprehensive electrochemical test platforms & energy conversion systems Operando measurement using synchrotron X-ray & neutron Technical