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Position Description Founded in 1810, Humboldt-Universität zu Berlin is one of Germany's leading universities. As a comprehensive university with over 36,000 students, it combines research
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with over 36,000 students, it combines research excellence with innovative support for young talents. Its international networks, interdisciplinary research collaborations, and progressive teaching
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services in research and teaching in german language (3SWS - fabrication and characterization of electronic materials, nano- and quantum structures - setting up and conducting magneto-transport
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Alfried Krupp Wissenschaftskolleg Greifswald | Greifswald, Mecklenburg Vorpommern | Germany | 2 months ago
Programme was launched in 2007 and is run with the support of the Alfried Krupp von Bohlen und Halbach Foundation. It enables fellows to concentrate on a major research project free from teaching commitments
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the Gravimetric Atom-Interferometer (GAIN) - prepare, optimize and use GAIN for comparison measurement campaigns - improve GAIN by implementing new technologies which also enable new measurement modes and
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Potassium What you bring to the table: - completed scientific university education (Master or similar) in electrical engineering (or related field with equivalent experience in electronics development
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/m) to further develop and improve the Gravimetric Atom-Interferometer (GAIN) in the joint project ATOMAQUA. ATOMAQUA is a new BMFTR funded joint endeavor bringing together academic institutions and
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modifications (PTMs) and will use advanced in vitro and animal models for translational studies to develop knowledge based nutritional intervention strategies for hub molecules. The hub molecules of life
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engineering. Your Responsibilities: • Develop and implement automated experimental workflows for soft matter and colloidal systems, including robotic liquid handling, high-throughput sample preparation, and
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–Nano Interfaces at the earliest possible date. The position offers the opportunity to develop and apply advanced methodologies for investigating interactions at bio–nano interfaces, with particular