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-Computer Interaction Human Factors Accessibility and Inclusive Design You will join a multidisciplinary consortium of academic, societal, and industry partners working towards one shared goal: enabling more
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microswimmers/microrobots that can move and interact autonomously in 3D environments, mimicking the complex dynamics of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable
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for international PhD candidates. What will you do? You will design, develop, and implement a series of interactive learning activities that support international PhD candidates before and after their arrival in
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design rules to understand their chemistry and physics. You will combine coarse-grained and atomistic simulations with surrogate models and experimental insights (with Dr. Baumgartner) to understand
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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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, 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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nephrology. What will you do? Design and optimise a transcutaneous vascular access port Develop and test biomaterials and surface coatings with a focus on hemocompatibility Perform in vitro experiments
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technologies. As the design principles for long-lived molecular magnets become clearer, the next challenge is assembling these units into spin lattices via surface deposition and addressing their magnetic