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A robotic hand developed at EPFL can pick up 24 different objects with human-like movements that emerge spontaneously, thanks to compliant materials and structures rather than programming.
SPIDAR, a hybrid aerial-terrestrial robot, uses vectoring rotors for agile flight and crawling across diverse terrains.
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Interesting Engineering on MSNSteam-powered robot generates 50 Newton force to crawl, grip, climb with easeThe breakthrough, a phase-change actuator designed by scientists from the University of Coimbra, reportedly revives a ...
An edible robot built by EPFL scientists in Switzerland uses a combination of biodegradable fuel and surface tension to move across the surface of water.
A fully automated spraying drone platform took the grand prize – a $20,000 Innovation Award sponsored by Farm-ng and Western ...
In addition to training future players, the technology could expand the capabilities of other humanoid robots, such as for ...
Unitree’s firefighting robot highlights how rugged design and real-time systems enhance industrial safety solutions. AI-powered reverse knitting reveals how vision-based automation can streamline ...
An edible robot designed by Swiss researchers is taking cues from nature, offering remote sensing with fewer environmental ...
Engineers developed a ping-pong-playing robot that quickly estimates the speed and trajectory of an incoming ball and precisely hits it to a desired location on the table.
Robotic bricklayers represent a revolutionary advancement in construction technology, combining precision mechanics, artificial intelligence, and material handling systems to automate one of the most ...
MIT engineers have developed a lightweight, high-speed robotic arm capable of returning ping pong shots with impressive precision and speed.
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