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inside compartments and use this knowledge to tailor IDPs for enhanced biocatalysis. Your profile: Eligible candidates have strong skills in molecular biology, (bio-)chemistry, and biophysics and have
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qualification (usually PhD). Tasks: The successful candidate will work in a team developing metal-free magnetism in graphene-related materials and organic 2-dimentional crystals by means of theoretical materials
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Max Planck Institute for Demographic Research (MPIDR) | Rostock, Mecklenburg Vorpommern | Germany | 28 days ago
high-income countries (including the UK). The project will be part of the International Max Planck Research School for Population, Health and Data Science (IMPRS-PHDS) (link ), the Centre for Population
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, and research-based public and educational work. Over the next ten years, the Museum für Naturkunde will realise its plan for the future. New laboratories and jobs for cutting-edge research will be
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. The department focuses on the production, analysis, and simulation of functionally optimized structures from the nanometer to the micrometer scale in electrochemically active materials, as well as the development
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: The successful candidate will work in a team developing metal-free magnetism in graphene-related materials and organic 2-dimentional crystals by means of theoretical materials science. A wide range of quantum
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PhD position - Stress-testing future climate-resilient city and neighbourhood concepts (Test4Stress)
Work group: Gerics - Climate Service Center Area of research: Other Part-Time Suitability: The position is suitable for part-time employment. Starting date: 08.05.2025 Job description: PhD position
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environmental change. The successful candidate will work in the project “Map4Risk – Mapping of heat-related systemic risk in cities”, which is part of the “Trans4Heat – Paths for sustainable transformation
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its employees in reconciling work and family life and regularly undergoes the audit berufundfamilie® . Further information at: http://www.ifw-dresden.de. The research group "Functional Oxides and
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aims to use atmospheric transport inversion techniques to estimate gross carbon fluxes (photosynthesis – GPP and respiration – TER) at regional scales. Past work has focused on Net Biome Exchange (NBE