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, and microbial resource management. The work comprises the analysis of temporal dynamics of bacterial and archaeal communities, large-scale sampling and quantitative molecular analyses, as
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is more diverse and dynamic than previously appreciated. This project aims to develop and apply a novel chemo-enzymatic method to label and extend the 5′ cap, enabling its detailed analysis through
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understand the molecular and cellular mechanisms that underpin post-viral syndromes, with a particular focus on Long COVID. You will be a key member of a dynamic, international, and friendly team, working
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23.10.2025, Academic staff Living systems develop complex structures and functions through principles of self-organization. Stem-cell derived organoids represent a unique platform to dissect
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and neutron scattering for structure and dynamics of these systems. For more information, see www.soft-matter.uni-tuebingen.de . Currently we are looking for a post-doctoral researcher to contribute
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across the lifespan, with a particular emphasis on ecological active learning—how learners interact dynamically with their environments to acquire knowledge and make decisions. This is an open-topic
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group A14, 100% Lateral leadership of a dynamic and committed team of approx. 10 PhD students Fixed-term full-time position for 3 years with option to extend Innovative research area with high societal