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I have been helping by advising various companies across multiple industries plan & prep for more on boarding of bot technology as part of their own IT infrastructure and application layer. What I have seen companies who are at a turning point for their applications and infrastructure are wanting to invest in more automation meaning more online bot technology so that the resources that they currently have can be scaled to focus on new products & services innovation to help IT become a profit center & deploy commercial services and products to the company’s external customers.


We’re at the cusp of a sharp rise in devices that have no screen but do have conversational voice controls, such as the Amazon Echo. Smart home and Internet-of-things (IoT) objects that respond to users’ voices will improve and become more intuitive with further iterations and wider adoption.

Already they can, for example, dim the lights in a room and play a favorite song. With practice, and, by the virtues of machine learning, these user experiences will become ever more intuitive, capable, and innate.

Beyond the IoT, brands are seeing bots as a new type of media – one that can be harnessed to expand a company’s reach to new customers and networks. As brands use bots more and more to handle customer interactions, make recommendations, and help fulfill requests, those brands and the bots themselves also absorb insights about customer behaviors and needs.

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WALLOPS ISLAND — With space station resupply launches expected to resume in August and a runway under construction for testing drone flights, Virginia is looking at another opportunity to lure a major federal research program to the state’s expanding spaceport complex on this Eastern Shore barrier island.

The U.S. Department of Homeland Security is expected to begin looking for a place to base a new “science and technology testing ground” for unmanned vehicle systems — operating in the air and underwater — and boosters say the regional spaceport would be an ideal fit.

“What better place to do it than here?” said Peter Bale, chairman of the Wallops Island Regional Alliance, as members of the House Appropriations Committee visited last week.

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* * * Winner the VFX Japan Award 2013.
* * * Winner of the Special Jury Prize, Asian Film Festival Dallas.

Love Like Aliens 3D animated short produced in Tokyo, Japan.

Created by entertainment industry veteran and filmmaker Rashad Haughton, six and half minute animated short brings to life the iconic works of legendary artist and gynoid creator Sorayama Hajime in a way never before seen in film.

In a future not too far from now, humanity has advanced to a point where the line between Homo Sapiens and Androids have blurred completely. This has occurred so that the species could survive. Technology has allowed humans to travel into deep space to colonize other planets and galaxies deep in the universe because Earth has become uninhabitable. One of the many unfortunate results of this robotic Darwinism is that human behavior and consciousness has also changed over the years. Much of what makes one human — love, family, intimacy etc., have all become things of the past. Almost legend…

See more: http://wonderstanding.tv/

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It would seem that no one’s immune from the effects imposed by our increasingly sophisticated artificial intelligence and robotics — not even doctors. As research from Indiana University has revealed, a new computer program is doing a better job than doctors when it comes to both diagnosing and treating health conditions — and by a significant margin.

The system, which uses decision making processes similar to the Jeopardy-bot, Watson, was recently given the task of analyzing and predicting the health outcomes of 500 real individuals. After plugging in the relevant data — which mostly had to do with clinical depression and chronic diseases like high blood pressure and diabetes — researchers Kris Hauser and Casey Bennett compared the outcomes to the simulated treatment prescriptions.

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The craving to explore beyond our solar system grows sturdier every day. This proves true for the understanding of wormholes and time travel as well. In order to satisfy our thirst for the unknown, NASA will research unknown physics revolutionizing exploration of space. We first have to advance our understanding of space-time, the quantum vacuum, gravity and other physical phenomena. This info will help NASA send robots on interstellar space missions. Precisely 15 areas will be studied comprising human exploration, landing systems, nanotechnology and robots.

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Having UAVs conduct routine aerial surveillance is already having a transformative effect on farming and and energy production but they can only operate when there’s a human at the controls. That’s about to change thanks to an autonomous drone system that not only flies but also maintains itself. Tel Aviv-based UAV Airobotics has debuted a completely automated patrol drone system of the same name that is capable of operating with virtually no human intervention.

The system is composed of three parts: the drone itself, the “Airbase” robotic base station and the command software. It uses an “Optimus” UAV that can carry a 1-kilogram payload for up to 30 minutes. When the UAV finishes its patrol, it will land atop the base station whereupon a robotic arm will automatically swap out its battery and payload. All of this is controlled by the integrated software which enables users to pre-program flight paths as well as view real-time video and data feeds. The Airobotic system will likely find use in the mining and oil and gas industries as an aerial mapping platform, though it could easily be applied to any repetitive delivery or flyover task.

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Power consumption is one of the biggest reasons why you haven’t seen a brain-like computer beyond the lab: the artificial synapses you’d need tend to draw much more power than the real thing. Thankfully, realistic energy use is no longer an unattainable dream. Researchers have built nanowire synapses that consume just 1.23 femtojoules of power — for reference, a real neuron uses 10 femtojoules. They achieve that extremely low demand by using a wrap of two organic materials to release and trap ions, much like real nerve fibers.

There’s a lot of work to be done before this is practical. The scientists want to shrink their nanowires down from 200 nanometers thick to a few dozen, and they’d need new 3D printing techniques to create structures that more closely imitate real brains. Nonetheless, the concept of computers with brain-level complexity is that much more realistic — the team tells Scientific American that it could see applications in everything from smarter robots and self-driving cars through to advanced medical diagnosis.

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