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systems science. The DCs will build on ground-breaking findings being generated at the RE-Fibre consortium, to enable the development of fully recyclable functional biobased composites with properties
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? To this end, our existing high-fidelity fluid-structure interaction solver (prediction of turbulent flow structures and fluid-structure interaction) needs to be combined with sophisticated blood damage models
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dependencies, land concentration, soil degradation, and water pollution. Despite their lack of sustainability and resistance from some farmers, synthetic fertilizers continue to dominate agriculture worldwide
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and regenerative aspects of healing. These models will enable systematic evaluation of material-cell interactions under physiologically relevant conditions, helping to reduce the IVIVD and advance
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in the global carbon cycle and have the potential to mitigate greenhouse gas emissions by oxidizing methane, even at atmospheric concentrations. The research will investigate how interactions between
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engineering applications. Empa's Centre for X-ray Analytics develops X-ray analytical and imaging methods for understanding materials structure in material, life- and medical sciences. This is a joint PhD
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blade aerodynamics, gust interactions, and fluid-structure interactions. The research focuses on unfolding the origin and development of unsteady flow separation and vortex formation. The lab has built a
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yields while fostering dependencies, land concentration, soil degradation, and water pollution. Despite their lack of sustainability and resistance from some farmers, synthetic fertilizers continue to
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protein-DNA interactions) Produce stable complexes between proteins and/or DNA Determine structures of proteins/complexes Design mutants and perturbations for in vivo experiments Perform in vivo functional
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fertilizers exploded over the twentieth century, boosting yields while fostering dependencies, land concentration, soil degradation, and water pollution. Despite their lack of sustainability and resistance from