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Needs lots and lots of work still.


The humanoid robot Walk-man showed of some of his life-saving capabilities in Genoa Thursday, as the Italian Institute of Technology (IIT) and University of Pisa develop the hardware for disaster response operations.

The 185-centimetre-high (72 inch) robot is a result of the four-year research program which started in October 2013 aimed at assisting or even replacing humans in civil damaged sites including buildings, such as factories, offices and houses.

“This is actually an anthropomorphic robot that was developed to assist humans during situations where actually we have physical disaster: disasters made by humans or the environments that becomes hostile and dangerous for emergency responders to intervene,” said IIT Senior researcher Nikolaus Tspgarakis.

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TweetScientists from Cornell University have come up with a new form of technology that holds a lot of promise in the field of electronics, where stretchy screens and other products are shaping up to be the wave of the future. Scientists from Cornell University have come up with a new form of technology that holds a lot of promise in the field of electronics, where stretchy screens and other products are shaping up to be the wave of the future.

The Cornell study published yesterday in Science takes a look at a pliable type of “skin” that changes colors and flexes and stretches based on the pressure it senses. This skin is said to be similar to that of squid and octopus, but, according to Cornell Organic Robotics Lab researcher Chris Larson, it’s “much, much, much more stretchable than human skin or octopus skin.” He compared the stretchy skin to something akin to a “rubber band or a balloon.”

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Audi RSQ – a fantastic car. Certainly a design icon, but first of all, a movie star. The Audi RSQ was the first car we developed for a motion picture – with great success. This sporty coupé for the 2004 Hollywood science-fiction “I, Robot” was a visionary concept of what a car might look like in 2035. Four designers, ten model engineers, ten weeks, all creative liberties – that’s what it took to create this Audi of the future.

What was really unique and visionary about the Audi RSQ: It was the first Audi demonstrating piloted driving capabilities. Here is one of my favorite moments in the movie – a moment that tells you a lot about piloted driving:

The Audi RSQ is going autonomously in a busy, but fluent traffic situation. Suddenly, the car comes under heavy attack by enemy robots. Actor Will Smith in his role of a police officer decides to take over. Like all heroes, he wants to manage and control critical situations by himself. But his lady co-driver does not trust him and says: “Oh no, don’t do it! It is too dangerous to control the car by yourself!” And she is right, he is damaging the car a few minutes later.

This dialogue is a great lesson in future technology:

What was science-fiction in 2004, became reality only ten years later. Today, we connect driver, car and environment in an intuitive way. Today, our cars are ready for piloted driving and piloted parking. Piloted driving is a great example of how we turn technical vision into emotional premium products that fascinate customers around the globe.

As an innovation driver for the automotive industry, we count on a proven formula of success: Pioneering solutions + precision engineering + partnering with the best. We partner with the leaders in automotive and consumer electronics, in battery systems, in research and education.

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Spherical tire takes autonomous cars sideways into the future.

http://www.gizmag.com/goodyear-tires-autonomous-cars/42135/


The Goodyear Eagle-360 is our vision for a tire for the long-term future that looks radically different from tires today…it’s a sphere! The unique shape means ultimate manoeuvrability, safety and connectivity for autonomous vehicles.

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Could this Quantum Technology inertial sensors be utilized to provide more reliable navigation to driverless autos? Quantum again proves to serve multiple usages.


Advances in laser cooling of atoms have produced a new generation of inertial sensors based on matter-wave interferometers, which are becoming an essential technology for accurate positioning or geodesy.

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Very glad to see this article released. When I look at technology I have to look at their value (short & long term), cost & time to develop, usability and adoption potential, and risks & liability as well as their revenue potential & longevity in the market. In order for robots to have broader adoption by consumers and longevity in the future; development groups will need to design & develop robots that are more personable & multi-functional for consumers and companies. We still have a long ways to go.


What role does a philosopher play in building robots? If you’re Lisa Miracchi, an assistant professor in the Department of Philosophy in the School of Arts & Sciences, more than you might think.

When scholars began studying human intelligence, Miracchi says two schools of thought emerged: One group said human beings are simply computers, with mental states and actions explained in computational terms. The other camp believed that intelligence and the ability to think makes humans more than just computers.

There are important similarities between human beings and computers, Miracchi says, but “the story is much more complicated.”

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SANTA ROSA, Calif., March 2, 2016 /PRNewswire/ — Dr. Joanne Pransky, recognized for 30 years as the “World’s First Robotic Psychiatrist,” just launched a new Website and YouTube Channel at www.robot.md.

The day after actor Carrie Fisher captivated Oscar viewers in an IBM Watson commercial where she holds group therapy for robots, “Dr. Joanne” brought her new website to life. “Carrie Fisher deserves an honorary diploma of robotic psychiatry!” Dr. Joanne exclaimed.

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