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/ double degree programme No Description/content The International Max Planck Research School links the Max Planck Institute of Microstructure Physics with the Martin Luther University Halle-Wittenberg and
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physical design tools such as design compiler and Cadence Innovus will be advance Expertise in at least one area as a plus: deep learning hardware development edge AI memory technology Strong problem-solving
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analytical skills with the ability to lead complex design efforts. The ability to quickly familiarize yourself with new technical and scientific contexts Good written and spoken English skills as a basis for
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oxides (NOx) and volatile organic compounds (VOCs), meaning that a reduction in precursor substances can even lead to an increase in ozone levels. Additionally, some of these precursor substances come from
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tweezer, fluorescence life time imaging as well as light and atomic force microscopy among others. This project will help to build a novel approach to the generation of active surfaces and help
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of Chemistry, Physics and Materials Science and Engineering. All departments offer high quality study programs and the RTG will provide an excellent complement to other graduate training programs at Saarland
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resolution analysis, monitoring of chemistry, structure and transformations at the atomic scale of buried interfaces and defects by correlated experimental techniques in both space and time (e.g., correlated
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. Cryo-EM has become a very powerful method to visualize ice-embedded samples including purified proteins at close to atomic resolution. Typically, single-particle cryo-EM as well as cryo-ET are based
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qualification (usually PhD). Tasks: The successful candidate will investigate ion transport through atomically thin membranes made of 2D polymers and graphene derivatives in close collaboration with experimental
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Max Planck Institute for the Structure and Dynamics of Matter • | Hamburg, Hamburg | Germany | 2 days ago
programme Yes Joint degree / double degree programme No Description/content The programme offers exciting research opportunities at ultra-intense electron and x-ray sources to directly observe atomic motions