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imaging using deep learning. You will study the water imbibition in hierarchically porous Si‑based material systems across multiple length and time scales. These systems can manipulate fluid transport
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laboratory, phenotyping, and imaging infrastructure • Opportunities for international collaboration and participation in conferences and project workshops Application procedure Please submit your application
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The molecular biosciences are undergoing a major paradigm shift – away from analysing individual genes and proteins to studying large molecular machines and cellular pathways, with the ultimate goal
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related discipline background in one or more of the following areas is desired: X-ray or electron imaging techniques, and image processing proficiency in programming languages such as Python and experience
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, their achievements and productivity to the success of the whole institution. Biomolecular condensates have emerged as a new paradigm to understand biological functions in living cells. Dresden has pioneered research
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a new paradigm to understand biological functions in living cells. Dresden has pioneered research in the field of biomolecular condensates. The newly DFG-funded Research Training Group “Biomolecular
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) Problem Definition: The products resulting from ablative processes at the gas-surface interface are mostly unknown with respect to their impact on the atmosphere. Numerical modelling is challenging due
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to the success of the whole institution. Biomolecular condensates have emerged as a new paradigm to understand biological functions in living cells. Dresden has pioneered research in the field of biomolecular
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scaffold development and cell culture processes. Prior experience with bioreactors and bioreactor process optimization is a plus. Good analytic and imaging skills. Very good communication skills. Highly
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) in an experimental model of multiple sclerosis (MS). This project builds on recent findings from the phase III Hercules trial (Fox et al., NEJM 2025) showing therapeutic effects of BTK inhibition in