A few years ago, researchers created the world’s lightest metal for Boeing, and now the airline has shown it off for the first time in this new video. Called microlattice, the material is 100 times lighter than styrofoam but is as rigid as metal, which means that it has some pretty exciting applications — not limited to being able to balance on top of a dandelion.
Microlattice was inspired by the structure of our bones, which are very rigid on the outside but mostly hollow on the inside, which means they can’t be easily crushed, but are lightweight enough for us to carry around all day. The new Boeing metal mimics this, and despite its rigid exterior, it has a 3D open-cellular polymer structure, which means its structure is 99.99 percent air.
Researchers claim to have cracked the problem of creating giant displays that can show images in 3D without the need for glasses.
Austrian researchers have developed a laser system that sends different images to each eye — and say it could lead to New York’s Times Square having its first 3D ads.
It would mean the 3D billboards seen in Back to the Future II, set in 2015, could finally become a reality.
“this is the kind of alien megastructure we’ve always suspected could be around distant stars, true indications of an advanced alien species. It’s a tantalizing possibility, and one the Berkeley SETI team are drafting up the proposal to follow-up on.”
Professor Nick Bostrom briefed political representatives from around the world on the national and international security risks posed by artificial intelligence and other future technologies at a UN event last week.
Professor Bostrom, Director of the Future of Humanity Institute, Oxford Martin School, was invited to speak at a special side event examining the challenges posed by chemical, biological, radiological and nuclear (CBRN) materials and weapons, held during the UN’s 2015 General Assembly meeting.
The event was organised by Georgia’s UN representatives, in collaboration with the United Nations Interregional Crime and Justice Research Institute (UNICRI), with the aim of understanding the implications of new technologies, ensuring responsible development and mitigating against misuse.
A team of researchers from Japan’s Chiba Institute of Technology recently presented a novel robot design at the IEEE/RSJ International Conference on Intelligent Robots and Systems. It can be thrown like the Explorer camera sphere, but after it stops rolling, this nimble quadruped unfurls mechanical legs to skitter the rest of the way to its destination — basically the same idea as Star Wars’ Droideka, just without the laser cannons (yet).
The robot is called the QRoSS. The second iteration, shown above, employs a 30 cm protective shell. It uses this shell mostly as a passive shock absorber, akin to a robotic roll cage. And since the legs operate independently from the outer structure, the robot can easily navigate rough and uneven terrain at speeds reaching 0.1 meter per second without fear of falling over. Even if it does, the cage will take the brunt of the damage, not the delicate machinery inside. This setup therefore could be employed in emergencies by first responders to scout ahead of rescue teams operating in damaged or structurally unsound buildings.