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Field
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the carbon flux in Chlorophyta to elucidate the metabolic pathway from CO2 to the cell wall and use molecular biological tools to generate algal strains with improved cell wall properties. This project offers
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requires basic knowledge in biomedicine, including the molecular biology of the eukaryotic (stem) cell, pathomechanisms, and immunobiology. The curriculum also provides knowledge in cellular, genetic and
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electron microscopy image simulations Development of a machine learning model capable of inferring 3D atomic structure from two-dimensional TEM projection images Application of the new approach
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to train an AI model that predicts the cis-regulatory code for synthetic genomes (i.e. for cell-free gene expression systems) and correlates the experimental conditions within the synthetic cell
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Conservation Soil Science of Temperate Ecosystems Soil Science of Tropical and Subtropical Ecosystems Molecular Wood Biotechnology and Technical Mycology Silviculture and Forest Ecology of the Temperate Zones
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Neuroscience uses theoretical approaches from this broad range of disciplines to integrate experiment, data analysis and modelling in order to understand the brain. Furthermore, it makes a scientific language
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supervising studies that involve in vitro assays and in vivo mouse tumor models to understand mechanisms of immunotherapy resistance, exploration of pathways involved in signal transduction in different T cell
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of patients to creating in-vitro 3D models and using artificial intelligence for imaging.s pelvic floor complaints (prolapse and full ruptures) and to optimise existing treatments, for example with
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group, we synthesise these functional nanomaterials from the bottom-up, using protocols of molecular beam epitaxy and on-surface supramolecular chemistry. We study these systems by means
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Master’s degree in biotechnology, bioengineering, bioeconomy cell biology, molecular biology, or a comparable field of study, preferably with a background in life cycle assessment (LCA) and techno-economic