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even in modern GPU systems. This project investigates neuromorphic sensors and sensor fusion of multiple event-cameras in a real-time human-robot co-working space, where a robotic manipulator (a 7 DOF
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Applications in the Department of Biomedical Engineering and Health Systems. Candidates with a background in biomedical, mechanical, or electrical engineering and research interests in robotics, sensors, and
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. The program addresses research on artificial intelligence and autonomous systems acting in collaboration with humans, adapting to their environment through sensors, information and knowledge, and forming
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sensors and also in terms of fundamental understanding of light interaction with free flying insects. We now aim to push the boundaries for retrieval of nanoscopic information from their surfaces
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interdisciplinary research. Systems development may include, for instance: advanced materials, surfaces and fabrication; distributed sensors and actuators; quantum and photonic systems and interactions
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division are on technologies with applications that span from basic science to future sensors and communication systems. We are at the forefront of innovation in terahertz electronics, working on projects
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or explainable AI or safety). Experience in machine learning, causal inference, image processing, human-robot interaction, or large language models. Experience in analyzing multimodal data (e.g., text, sensor
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acting in collaboration with humans, adapting to their environment through sensors, information and knowledge, and forming intelligent systems-of-systems. The vision of WASP is excellent research and