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to turbulence, shock wave boundary layer interactions in the supersonic and hypersonic regimes. The Aerodynamics laboratories are equipped with state of the art wind tunnels with a large low-speed (low-turbulence
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estimation of 3D coronary hemodynamics (velocity, pressure, and wall shear stress fields); design computational pipelines that integrate image-based anatomy, blood flow physics, and uncertainty quantification
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designed for the 13 Research Fellows within the BIO-MICRO consortium. The BIO-MICRO training programme offers a blended learning approach that combines monthly interactive live online sessions (60–90 minutes
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completely CO2 neutral by 2050. The programme “Growing with Green Steel” is a plan to achieve this, involving major changes throughout the steel value chain. The section Mechanics of Materials contributes
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Technology Interaction is actively involved in studying these developments by building its research on a disciplinary foundation in metascience, yet explicitly strives to bridge and contribute
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, and these muons carry information about particle interactions at energies far beyond the reach of any accelerator on Earth. In this project you will turn that signal into cosmic-ray physics: measuring
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interest in metal–impurity interactions, interfacial phenomena and its commitment to computation-guided design for green and circular steel production. You will collaborate closely with researchers from
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activities may include: Designing and developing AI-supported human-machine interaction concepts. Integrating emerging technologies into assistive robotic systems. Working with patients and healthcare
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system. Design and implement an NLP/LLM-based system capable of identifying socio-cognitive and socio-emotional triggers in student group interaction data (text, audio, and multimodal streams), drawing
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magnetic moment and serve as the building blocks of molecular quantum devices for next-generation technologies. As the design principles for developing molecular magnetic behavior become clearer, the next