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of superconductivity, cryogenic characterization, micromagnet manufacturing, or quantum computing is an advantage Comprehensive knowledge of common analysis methods (e.g., AFM, SEM, 4PP, XPS) Expertise in project
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method development and applications in computational catalysis, at the interface of chemistry, physics, and computational sciences. The goal of the group is to explore the dynamic behavior of catalytic
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study regions. Proven proficiency of state-of-the-art quantitative methods. Fluency in English. Desired qualifications: A focus on geo-economics and/or geo-politics. Experience with, or in interest in
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of superconductivity, cryogenic characterization, micromagnet manufacturing, or quantum computing is an advantage Comprehensive knowledge of common analysis methods (e.g., AFM, SEM, 4PP, XPS) Expertise in project
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description: scientific services in teaching and research in the field of chemical biology use primarily of organic chemistry methods, enzyme assays and possibly molecular biological methods collaboration in
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unfolding in international standardization using mixed methods – surveys are combined with in-depth interviews and participant observation. The project is interdisciplinary as it combines insights from
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international standardization using mixed methods – surveys are combined with in-depth interviews and participant observation. The project is interdisciplinary as it combines insights from the standardization
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available from the 1st. of January, 2026. Your responsibilities Quantum & Reactive Simulations: Apply first-principles methods (e.g., DFT) and reactive force fields (e.g., ReaxFF) to capture precursor
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and chemoenzymatic synthesis of post-translationally modified peptides with repeat structures development of fragment linking methods for the synthesis of long proteins, bioassays tasks for personal
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–policy interface for municipal biodiversity conservation and climate adaptation with nature-based solutions Processing and evaluation of remote sensing data, including methods of computer vision