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to the development of high-performance, multimodal sensor systems with strong application potential in digital healthcare, robotics, and smart environments. The successful candidate will be an integral part of a
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Responsibilities: Develop and optimize flexible electronic devices, including sensors, actuators, and integrated circuits for health monitoring / wearable robotics applications. Design and fabricate flexible
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Responsibilities: Develop and optimize flexible electronic devices, including sensors, actuators, and integrated circuits for health monitoring / wearable robotics applications. Design and fabricate flexible
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@TorontoMet (external link) and @ECItorontomet (external link) on Twitter, and visit our LinkedIn company page (external link) . The opportunity The Robotics, Mechatronics and Automation Laboratory (RMAL
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materials science, electronics, and data-driven systems—delivering impact in applications spanning health, environment, and robotics. Key Responsibilities: Design, fabricate, and integrate multimodal sensor
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operation. Develop modular architectures for multi-agent coordination, sensing, and communication. Integrate sensor suites, flight controllers, and swarm coordination algorithms into UAV platforms. Conduct
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robotics, localization, mapping, and multi-modal sensor fusion; (b) proficiency in programming languages such as Python and C++; (c) demonstrated ability to conduct independent research and contribute
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-making algorithm for autonomous vehicles. The work will involve sensor fusion, perception, trajectory prediction and test rig set-up, and experimental validation. Job Requirements: PhD Degree in Vehicle
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. Familiar with space mission design and analysis, particularly in rendezvous, proximity and docking operations. Knowledge of space hardware and systems, including satellite platforms, robotic arms, sensors
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, multifunctional sensor systems for emerging applications in healthcare, robotics, and environmental monitoring. The successful candidate will apply materials science principles to engineer sensor performance