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invites applications for the position as PhD student (f/m/d) We are looking to recruit a PhD student for projects in structural studies of membrane trafficking using cryo-electron tomography (cryo-ET). We
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chromatin structure, cell cycle, and replication timing on damage processing. We engage in collaborative research for real-time measurements of replication fork progression in live cells and develop methods
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Materials and Devices – Structure and Function of Materials (IMD-1) to establish a data-driven, experimentally grounded workflow for rapid microstructure-property optimization in steels. The PhD student will
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such as proteomics, microscopy, and transcriptomics. We complement these studies with protein biochemistry and structural biology to link molecular mechanisms with their developmental consequences. If you
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(DSBs) in the F1 generation, where a highly enriched heterochromatin structure blocks the accessibility of homologous recombination (HR) repair machinery. This project will investigate how DNA damage in
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collaboration Initiative Structured and goal-oriented approach to work Open-minded personality, teamwork and communication skills Above-average academic performance Experience with cell and molecular biology
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detailed structural, magnetic and spectroscopic characterization, in particular using electron paramagnetic resonance (EPR). The project will be in collaboration with a team in the physics department
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description: The PhD project aims to investigate how tree-derived defense metabolites influence the structure and function of microbial communities, including both pathogenic and beneficial microbes. The focus
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Successful candidates have strong skills in computational molecular (bio)physics, structural biology and scientific computing, as well as a keen interest in interdisciplinary research and
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are three-stranded nucleic acid structures consisting of an RNA-DNA hybrid and a displaced single-stranded DNA (Allison et al., CST 3, 38-46 (2019)). They form naturally during transcription, where