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Field
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intrinsic insults but also from cell extrinsic effects. Within the bone marrow (BM), HSC interact with several cellular and acellular (growth factors, extracellular matrix and vesicles) components which have
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the smooth processing of big data in the context of scientific, AI-driven energy systems research – scalable, transparent, and interoperable. Your tasks in detail: Development of a structured description
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The INM research group Structure Formation is seeking for a motivated Doctoral Researcher interested in the self-assembly of nanoplatelets (NPLs) for optical applications. This PhD project is part
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International Max Planck Research School for Living Matter | Dortmund, Nordrhein Westfalen | Germany | about 1 month ago
research projects in the areas of biochemistry, structural biology, biophysics, cell biology, chemical biology and synthetic biology? The International Max Planck Research School for Living Matter: from
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-driven energy systems research – scalable, transparent, and interoperable. Your tasks in detail: Development of a structured description format for the unambiguous and machine-readable characterization
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for upscaling ecosystem properties (e.g., productivity, phenology) Contribute to the development of an Alpine remote sensing monitoring system Interactive collaboration and exchange within the TUM Center
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the molecular mechanisms of quorum sensing in Klebsiella pneumoniae and its role in host–microbe interactions. The successful candidate will work in a stimulating, international, and collegial research
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Max Planck Institute for Terrestrial Microbiology, Marburg | Marburg, Hessen | Germany | 28 days ago
years, TVöD E13, 65%). The project focuses on uncovering the mechanisms of quorum sensing in Klebsiella pneumoniae, with a special emphasis on host–pathogen interactions. If you’re interested in
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of biochemistry, structural biology, biophysics, cell biology, chemical biology and synthetic biology? The International Max Planck Research School for Living Matter: from molecules to dynamics (IMPRS-LM) is a
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academic qualification which is highly recommended. The research activities of the Chair of Ultrafast Microscopy and Photonics concentrate on many-particle effects and interaction with light in solid matter