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Field
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team and actively participate in the DIPONI project (“Digital Transformation in Polymer Processing: Interoperability and Machine Learning Solutions for Process Optimization and Sustainability
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are shaping the technologies and processes for the future of digital production, packaging and scanning technology and many other laser-based applications, such as 3D printing and laser fusion. In the ‘Data
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, the purpose for which your data will be processed, as well as further information about data protection is available to you on the website: https://tu-dresden.de/karriere/datenschutzhinweis .
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ties with the local experimental groups of TUD and the institutes of the DRESDEN-concept environment. The chair hosts its own computer cluster and has full access to the high-performance computing
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other siderophores using native production, genetically modified organisms and cell-free processes for the production of siderophores with the aim of achieving the highest possible siderophore
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spectroscopy. The present project will involve the following steps: • Development of scanning probe near-field sensors based on solution-synthesized metallic nanoparticles • Operation of an existing setup
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stereoselectivity. Typical research targets include: Identification and (optionally) engineering of suitable enzymes Development of analytical methods (HPLC, ...) Production of enzymes Process development and
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healthy work-life balance. Hands-on experience with microarray design, synthesis, processing, and analysis. Training in CRISPR-Cas9 assays, both in vitro and in vivo. In the case of essentially reciprocal
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organismal systems across diverse biological contexts. Using a blend of cutting-edge experimental and computational approaches, we strive to decode and model complex biological processes—from single-cell
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quantitative and mechanistic insights into how complex biological processes operate and coordinate in the context of cells, organisms and communities and across temporal, spatial and evolutionary scales. Within