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Department. Computer Science website: https://cs.stanford.edu / Within the Stanford Artificial Intelligence Lab (SAIL ), the Stanford IRIS (Intelligence through Robotic Interaction at Scale) focuses
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. Demonstrated expertise in robotic systems, UAV platforms, and embedded computing. Strong track record of publications in robotics, control, or autonomous systems. Experience with ROS/ROS2, MAVLink, PX4/ArduPilot
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strengths in developing the fundamentals of AI and also in applying AI in Financial Technology and other areas such as Digital Health, and Robotics and Autonomous Systems. Our new Temple Quarter Innovation
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work closely with researchers in all NIOZ departments including the newly established Marine Robotics Group within the NMF Department at NIOZ. THE VACANCY NIOZ offers unparalleled access to new research
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Cal Poly San Luis Obispo University | San Luis Obispo, California | United States | about 14 hours ago
, Autonomous Vehicles , Circuits , Communications and Networking , Electromagnetics , Electronics , Embedded Computing , Integrated Sensors , Internet of Things , Power Electronics , Robotics , semiconductors
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: developing novel tools that improve biological AI models by orders of magnitude; developing closed-loop systems that combine robotics and AI for rapid autonomous experimentation; discovering in human tissues
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growing and collaborative robotics ecosystem at UCF. The selected candidate will play a pivotal role in advancing UCF’s new Master’s in Robotics and Autonomous Systems, launched in Fall 2024, and contribute
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-piloted Unmanned Aerial Vehicle (UAV), an adaptable robotic gripper, and an Artificial Intelligence (AI) powered decision-making framework. The AI will autonomously assess litter retrievability, considering
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or more Departments they wish to apply to. Applicants should submit a cover letter, curriculum vitae, statements outlining plans for teaching, research, and contributing to Penn State values (https
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movement as well as performing the “sim2real” step for the control of physical musculoskeletal robots in the real world, i.e., use cass include neuromuscular model-based control of robotic legs and arms