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internal and external partners to advance the project. Your profile The ideal candidate holds a PhD in biochemistry, structural biology or a related field, and has hands-on experience with cell culture
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) to study atomic structures of optically excited small unit cell crystals. The project involves measurements, data reduction and structure refinement of large serial femtosecond X-ray (SFX) crystallography
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disease and identify new therapeutic strategies. The position provides outstanding opportunities for scientific development in renal physiology, endocytic receptor biology, epithelial cell biology, and
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engineering (e.g., fusion proteins or ligand display), affinity-based targeting, or cell-uptake assays will be an advantage. Excellent English communication skills, ability to work independently and responsibly
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founded in professional scientific basic research. You can read more about the department here . About the research project The lab explores how immune cell function is regulated by ion channels and
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with live-cell imaging. The ideal candidate should have A PhD in molecular microbiology. Strong expertise in bacterial genetic engineering, functional genetic screening and transcriptomic/proteomic
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Computational Sciences or similar. You have strong expertise on analyses of biology-related large datasets. Expertise in single-cell and spatial data analysis, spatial statistics and annotation is an advantage
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quality, including publication. Establishing pre-clinical models of prostate cancer including in vivo (in conjunction with the Thomsen group), cell-line co-culture and organoid models. Sectioning tissue
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, quantitative proteomics, post-translational modification analysis and mechanistic cell biology to uncover fundamental principles governing protein regulation in health and disease. The two positions offer
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. The tasks include battery cell characterization and modelling based on laboratory tests, and development of algorithms for estimating the charge level, health, and power capability which includes robustness