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the host lab. Characterization of the senescent associated secretory phenotype BM environment (e.g. of extracellular vesicles) may also be required to identify underlying molecular mechanisms for altered
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molecular mechanisms for altered interaction that affects HSC output in aging. This will be achieved via the implementation of state of the art multicolor flow cytometry analyses, imaging, omics techniques (e
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-microbe interactions, tree defense mechanisms and forest pathology. Proficiency in English (written and spoken). Good communication skills and ability to work independently and collaboratively. We offer: A
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The Institute for Cardiovascular Physiology of Goethe-University has a strong focus on epigenetic processes in the cardiovascular system with emphasis on translation and novel mechanisms. The well
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Project (PhD Position) – Quantum-Classical Co-Simulation Framework Development for Neurobiological Systems Your Job: The overarching goal is to implement a code for multiscale quantum mechanics / molecular
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results in materials with diverse microstructures and mechanical properties Perform experimental characterizations of additive-manufactured and heat-treated steels, using state-of-the-art methods, such as
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these materials into high-performance fibers and functional materials. By manipulating molecular interactions through chemical and physical methods, we tailor the structural and mechanical properties of bio-based
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selectivity mechanisms in potassium channels Simulation of electrophysiology experiments Please indicate in your application which of the above listed projects is most intriguing for you. Your profile
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | about 1 month ago
40 research groups and some 1,000 employees from over 50 nations, it is the largest institute of the Max Planck Society . The research group Molecular Mechanisms of Membrane Trafficking (Dr. Oleksiy
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1,000 employees from over 50 nations, it is the largest institute of the Max Planck Society . The research group Molecular Mechanisms of Membrane Trafficking (Dr. Oleksiy Kovtun) at the City Campus