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software and demonstrators. Academic skills to formulate novel architectural contributions integrating cognitive robotics algorithms into systemic solutions and publish them. Proven ability to finish
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. In this project, we aim to prove the concept of hard/soft concrete composites. The research will include: Computational modelling and optimization of concrete architectures Experimental testing and
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polymer brush architectures with dynamically tunable wetting, solute transport, and trapping properties. The work connects fundamental polymer and soft-matter physics with concepts from intelligent
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responsiveness to environmental stimuli such as solvent composition, temperature, light, or electric fields. In this project, we aim to exploit this responsiveness to design multi-layer polymer brush architectures
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of VWF are associated with elevated risk of thrombosis. The composition and 3D architecture of WPB during fusion and secretion of VWF have thus far remained unclear. This is mainly because traditional
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trustworthy AI for science. At Eindhoven University of Technology (TU/e), you will contribute to the project’s core technical components: scientific data orchestration and knowledge graphs architecture and
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to navigation and guidance, for example in nominal/degraded/failure modes; ever more complex mission architectures, including constellations, landers, hybrid crewed/robotic missions and cooperative missions with
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hyperspectral — to support early warning, strategic situational awareness and the monitoring of emerging risks. A key focus of the fellowship will be the development of explainable AI architectures capable not