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Imagine you’re enjoying a picnic by a riverbank on a windy day. A gust of wind accidentally catches your paper napkin and lands on the water’s surface, quickly drifting away from you. You grab a nearb...
Penn Engineering’s Michael Posa is an assistant professor in the Department of Mechanical Engineering and Applied Mechanics and the recipient of an April 2023 grant renewal from the Toyota Research In...
One of the virtues of untethered soft robots is their ability to mechanically adapt to their surroundings and tasks, making them ideal for a range of roles, from tightening bolts in a factory to condu...
Soft robots, or those made with materials like rubber, gels and cloth, have advantages over their harder, heavier counterparts, especially when it comes to tasks that require direct human interaction....
Controlling microscopic processes is inherently challenging. The everyday tools used to manipulate matter on the macroscale can’t simply be shrunk down to the size of cell, and even if they could, the...
AI image generators, which create fantastical sights at the intersection of dreams and reality, bubble up on every corner of the web. Their entertainment value is demonstrated by an ever-expanding tre...
Tool use has long been a hallmark of human intelligence, as well as a practical problem to solve for a vast array of robotic applications. But machines are still wonky at exerting just the right amoun...
Though autonomy in robotics constructed of soft materials is essential, creating autonomous soft robots that can intelligently interact with and adapt to changing environments without external control...
Some engineers find inspiration in the mechanics of bird flight and the architecture of bee nests. Others think much smaller.
Robots can be amazing tools for search-and-rescue missions and environmental studies, but eventually they must return to a base to recharge their batteries and upload their data. That can be a challen...
Telepresence robots help university students learning remotely to feel more a part of the class, new research by Oregon State University suggests.The findings are particularly important given the nati...
Inspired by the biomechanics of cheetahs, National Science Foundation-funded researchers have developed a new type of soft robot that is capable of moving more quickly on solid surfaces or in the...
North Carolina State University researchers funded by the National Science Foundation have demonstrated how kirigami-inspired techniques can be used to design thin sheets of material that au...
Researchers have developed soft robotic devices driven by neuromuscular tissue that triggers when stimulated by light -- bringing scientists one step closer to autonomous biobots.Teams led by Taher Sa...
National Science Foundation- (NSF) funded researchers from North Carolina State and Elon Universities have developed a technique that allows them to remotely control the movement of soft robots, lock ...

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