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: developing and implementing a data reduction pipeline for 2ES to achieve extreme RV precision; conducting laboratory testing and characterization of 2ES to ensure optimal performance and stability; integrating
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, large datasets, physical modeling, optimization, and safety and security are key factors. Our main showcase is the water sector, where we have designed and built a specialized laboratory focused on
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analysis Validation of turbine response models against measurements Inflow and wake modelling Wind turbine controller design Aero- and hydro-dynamic modelling Structural dynamics, beam models and cross
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to join our team working on next-generation speech enhancement technologies. The project explores innovative approaches that move beyond traditional reference-based methods, leveraging optimal transport and
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fermentation of green fractionated halophyte biomass into probiotic feeds. The specific work of the Post Doc will be to optimize and scale up the probiotic fermentation process to produce large amounts
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models Develop and optimize advanced protocols (e.g., single-cell assays, CRISPR-based screens) Collaborate with an interdisciplinary network of computational biologists, clinicians, and international
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into high-value functional feed additives, including fermentation of green fractionated halophyte biomass into probiotic feeds. The specific work of the Post Doc will be to optimize and scale up the probiotic
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include the following activities: Material development, synthesis and method optimization Metal nanoparticle catalyst and ceramic material and cell component comprehensive characterization and benchmarking
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technical challenges and proposing innovative solutions. Conduct tests at DTU Construct to document and demonstrate the optimal use of recycled metal in production. Contribute to integrating our findings
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-resolution Ultrasound Real-time imaging using. Erythrocytes (SURE). The approach can non-invasively visualize the microvascular structures in the human body for vessel diameters down to 28 µm from data