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-matter interactions for applications in sensing, optical communications, and quantum technologies. The scientific environment at our department is vibrant and highly collaborative with world-class
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(a) networked multi-agent human-robotic systems that work collaboratively in a well-coordinated and safe manner, (b) computational design and digital manufacturing of components, (c) design of
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interaction, social networks, fairness, and data ethics. Our research is rooted in basic research and centres on mathematical models of the physical and virtual world, as a basis for the analysis, design, and
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, cybersecurity, human-computer interaction, social networks, fairness, and data ethics. Our research is rooted in basic research and centres on mathematical models of the physical and virtual world, as a basis for
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research project at the interface of polymer chemistry, materials science, and molecular biology. Key tasks include: Designing and synthesizing hemoglobin-loaded polymeric nanocarriers Functionalizing them
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dynamic research environment with strong expertise in the design, characterization, and application of optical fibers supporting higher-order modes. You will also benefit from close collaboration and
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‘bringing science to life’ and we believe in openness, inclusiveness, having ambitions, making a difference and collaboration. You will play a role in the sensor part of the research section, interacting with
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resident in a EU Member State since at least five years. We offer DTU is a leading technical university globally recognized for the excellence of its research, education, innovation and scientific advice. We
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willingness to collaborate, network, and interact with other researchers, and the ability to disseminate research in seminars, conferences, and teaching classrooms. We expect you to lead and undertake
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research, education, innovation and scientific advice. We offer a rewarding and challenging job in an international environment. We strive for academic excellence in an environment characterized by collegial