Successfully developed materials that can transform themselves
Programmable self-transforming materials can help create implantable medical devices capable of self-deploying within the body at arbitrary speeds.
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Programmable self-transforming materials can help create implantable medical devices capable of self-deploying within the body at arbitrary speeds.
With tiny microchips implanted in a person, an ordinary person can become superhuman. They can unlock the door, turn on the lights, or log on to the computer with a sing…
Do you think all car ads use that vehicle to do it? Then you are tricked as the ad itself tricked you into buying that car.
Nano-structure researchers at Harvard University have successfully developed a new material that is capable of zooming in, zooming out and customizing the hardness of on…
Australian scientists have successfully developed the technique
American engineers designed the first 3D robot can automatically change the state from hard to soft, and know the high jump and vertical ground.
Whatever the bending or deformation, the alloy will return to its original form after a fire.
The American Space Agency (NASA) tests the new generation of wing aircraft with features
WayTools has launched a unique physical keyboard for the iPhone, which replaces the on-screen keyboard, but still has the convenience of carrying the iPhone's travel…
Bill Gates has posted details of the OmniProcessor project on the Gates Note blog, where his charity fund discusses bringing clean water and electricity to difficult are…
Researchers at Aalto University have developed a pilot project to convert CO2 and slag, the byproduct of steel production, into a valuable mineral product.
US researchers have created a new robot, capable of shaping and crawling without human intervention.
Professor Hosoi's metamaterial can be used to invent transformative surgical robots.
BAE Systems has unveiled a number of concept models capable of transforming, self-repairing and printing 3D unmanned aerial vehicles.