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I will admit there is some great VR and AI talent in the UK.


U.S. giants such as Apple and Microsoft are flocking to the U.K. to buy artificial intelligence (AI) start-ups as Britain establishes itself as the go-to place for the technology.

Microsoft announced that it had acquired London-based Swiftkey, an AI start-up that makes a predictive keyboard for smartphones, on Wednesday for $250 million, sources close to the deal told CNBC.

“We are looking for interesting tech. It is not new news that London is the most advanced start-up ecosystem in Europe,” a Microsoft insider who wished to remain anonymous because they were not authorised to speak publicly about the deal, told CNBC on Thursday.

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Future of Life Institute illustrate their objection to automated lethal robots:

“Outrage swells within the international community, which demands that whoever is responsible for the atrocity be held accountable. Unfortunately, no one can agree on who that is”


The year is 2020 and intense fighting has once again broken out between Israel and Hamas militants based in Gaza. In response to a series of rocket attacks, Israel rolls out a new version of its Iron Dome air defense system. Designed in a huge collaboration involving defense companies headquartered in the United States, Israel, and India, this third generation of the Iron Dome has the capability to act with unprecedented autonomy and has cutting-edge artificial intelligence technology that allows it to analyze a tactical situation by drawing from information gathered by an array of onboard sensors and a variety of external data sources. Unlike prior generations of the system, the Iron Dome 3.0 is designed not only to intercept and destroy incoming missiles, but also to identify and automatically launch a precise, guided-missile counterattack against the site from where the incoming missile was launched. The day after the new system is deployed, a missile launched by the system strikes a Gaza hospital far removed from any militant activity, killing scores of Palestinian civilians. Outrage swells within the international community, which demands that whoever is responsible for the atrocity be held accountable. Unfortunately, no one can agree on who that is…

Much has been made in recent months and years about the risks associated with the emergence of artificial intelligence (AI) technologies and, with it, the automation of tasks that once were the exclusive province of humans. But legal systems have not yet developed regulations governing the safe development and deployment of AI systems or clear rules governing the assignment of legal responsibility when autonomous AI systems cause harm. Consequently, it is quite possible that many harms caused by autonomous machines will fall into a legal and regulatory vacuum. The prospect of autonomous weapons systems (AWSs) throws these issues into especially sharp relief. AWSs, like all military weapons, are specifically designed to cause harm to human beings—and lethal harm, at that. But applying the laws of armed conflict to attacks initiated by machines is no simple matter.

The core principles of the laws of armed conflict are straightforward enough. Those most important to the AWS debate are: attackers must distinguish between civilians and combatants; they must strike only when it is actually necessary to a legitimate military purpose; and they must refrain from an attack if the likely harm to civilians outweighs the military advantage that would be gained. But what if the attacker is a machine? How can a machine make the seemingly subjective determination regarding whether an attack is militarily necessary? Can an AWS be programmed to quantify whether the anticipated harm to civilians would be “proportionate?” Does the law permit anyone other than a human being to make that kind of determination? Should it?

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Will Retail Stores of the future include robots as service/ floor reps & cashiers as reps — I believe so.


SoftBank gives preview Of robotic retail with Pepper, its humanoid robot.

Is our new tech-savvy customer base ready for robotic sales associates? Japanese tech firm SoftBank says yes, and offers its humanoid robot, Pepper, as an example.

Softbank is launching an online app store for Pepper, a robot that can read and respond to human emotions. The company also plans to open four new Pepper for Biz Atelier retail stores that will allow enterprise prospects to see the robots in action.

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Moley Chef Robots reappearing again today across the web. These do hold a lot of opportunity for restaurant franchises as well as homes. However, AI in a business has a break even point before the investment is no longer a wise or sound investment.

Always step back and look at the bigger picture 1st (e.g. look at all costs & any risks/ liabilities). Look at initial purchase/ lease costs, any write off/ depreciation opportunities, know your customer & your brand (if your restaurant is because of your master chef then a robot is a line chef which you consider how much your spending on a line chef as well as replacing them v. a robotic chef), know your local food & safety regs. Never good to put in a series of robotic chefs and local ordinances and city committees pass restrictions that forces you to de-install your $60K robot after 1 or 2 yrs.


Moley Robotics is the company behind creating an electronic chef that mimics the hand movements of actual cooks.

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Robots aren’t exactly known for their delicate touch, but soon, the stereotype of the non-gentle machine may change. Scientists say they have managed to develop a robot with “a new soft gripper” that makes use of a phenomenon known as electroadhesion — which is essentially the next best thing to giving robots opposable thumbs. According to EPFL scientists, these next-gen grippers can handle fragile objects no matter what their shape — everything from an egg to a water balloon to a piece of paper is fair game.

This latest advance in robotics, funded by NCCR Robotics, may allow machines to take on unprecedented roles. “This is the first time that electroadhesion and soft robotics have been combined together to grasp objects,” said Jun Shintake, a doctoral student at EPFL. Potential applications include handling food, capturing debris (both in space and at home), or even being integrated into prosthetic limbs.

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Bioprinting companies can be successful at start-up investment conferences, although they are sometimes outshone by more immediately accessible products. Bioprinters have the potential to drastically change life expectancy and quality in the long term, but can “only” help out with scientific research in the short term and that, often, is not exciting enough for start-up awards.

That was not the case at the recent SVOD (Silicon Valley Open Doors) Europe, an investment conference that began in 2005 and went global in 2015. The event then came to Europe for the first time in an effort to connect the Eastern European tech community with more established ecosystems. This year, the event took place in Ireland and “local” startupper Jemma Redmond took home the top prize with the Ourobotics 10 material 3D bioprinter.

I have been following Jemma and her team’s progress, from the pre-conference preparation all the way up to her presentation, via Facebook feed and other updates. The event took place at Google’s Dublin HQ and the winning team received, among other things, $5,000 in Google Adwords credits. Clearly happy about this success, Jemma told me they faced off against 25 other teams.

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The 6th annual European Smart Grid Cyber Security conference (7th – 8th March 2016)

Boy! I wish I could attend this meeting. I can imagine all of the conversations now “Quantum” & “Cyber Attacks” with some good old AI thrown in the mix. I am also guess that the 2 articles this week on the NSA maybe brought up too.


SMi Group reports: The MITRE Corporation will be presenting at the SMi’s 6th annual European Smart Grid Cyber Security conference (7th – 8th March 2016)

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