Facebook eyes ride-sharing feature for events pages

Facebook has been ramping up its Events pages as of late, and a recent patent application shows another use for those listings. In the paperwork, the social network explains how Events pages can also serve as a hub for ride sharing. Instead of the usual Going, Not Going, and Interested RSVPs on an event’s page, you would have the option to say whether or not you plan to drive. If you do, you can input details as to how many passengers you can take, if you just want to offer a ride to friends and what time you’ll be leaving. As you might expect, Facebook can pair passengers and drivers based on personal details like common interests, where you went to school and more to decrease the chances of awkward silence. After your pals (or soon-to-be pals) are all locked in, you’ll receive navigation info to guide you to the pickup spots. While a patent app doesn’t mean the company will actually implement the feature, this makes a lot of sense for Facebook. Using the Events pages as a primary interface could allow the folks in Melo Park to include ride sharing and carpooling relatively easily. For now, though, you’ll have to rely on hailing an Uber through Messenger . Via: Tech Insider Source: USPTO

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Facebook eyes ride-sharing feature for events pages

This Babylonian Astronomy Text Changes History

More than a thousand years before the first telescopes, Babylonian astronomers tracked the motion of planets across the night sky using simple arithmetic. But a newly translated text reveals that these ancient stargazers also used a far more advanced method, one that foreshadows the development of calculus over a thousand years later. Read more…

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This Babylonian Astronomy Text Changes History

The iPad Pro can handle firmware updates for accessories

Well, here’s an interesting development. Some iPad Pro users have noticed that, with the latest version of iOS 9, their monstrous tablet is able to push firmware updates to a connected accessory. Many customers were experiencing lag and other niggles with Logitech’s Create Keyboard Case , but found they could fix the problem by updating their slate to the second beta of iOS 9.3. As German developer Stefan Wolfrum notes , when the keyboard is attached through the Smart Connector an intriguing “Accessory Update” option appears on-screen. Within less than a minute, the update is completed and the problems are seemingly resolved. It’s the first time we can recall an iOS device updating an accessory’s firmware in this way. The mystery, at least for now, are the requirements for such an exchange. Is it dependent on the Smart Connector, the new version of iOS, or both? If it does require Apple’s fancy new port, that means the useful feature is restricted to the iPad Pro for now. Given at least one new iPad is expected in March , however, it might not be long before we see the capability in another, smaller and cheaper iOS device. WHOA! iOS 9.3 beta 2 apparently just updated my @Logitech Create #iPadPro keyboard’s firmware!! /cc @settern pic.twitter.com/N2uRxVWBiL — Stefan Wolfrum ☺ (@metawops) January 27, 2016 Via: Cult of Mac Source: Stefan Wolfrum (Twitter)

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The iPad Pro can handle firmware updates for accessories

Large Hadron Collider crew has to pull 9,000 old cables

Even particle physics researchers have messes to clean up now and then. CERN has revealed to Motherboard that it’s pulling 9, 000 obsolete cables in three of the Large Hadron Collider’s injectors in order to make way for newer cabling. That’s a lot of work by itself (many of the cables are dozens of feet long), but it’s made all the more daunting by the consequences of yanking the wrong line. Since the cables are largely for control and safety systems, one wrong move could prevent the entire particle accelerator from working — try explaining that slip-up to your supervisors. The crew has already disconnected 2, 700 of the cables, and expects to remove all of them in 2017. CERN shouldn’t have any problems with the LHC shutdown scheduled for 2019, in other words. And hopefully, this won’t be necessary again. The gigantic amount of clutter stems from a “not-so-good habit” of leaving old cables around, which suggests that engineers will be much smarter about cleaning up in the future. [Image credit: CERN] Source: Motherboard

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Large Hadron Collider crew has to pull 9,000 old cables

New stem cell treatment could ‘cure’ type 1 diabetes

Researchers at MIT and Harvard figured out how to produce pancreatic beta cells — the ones that produce insulin — in large quantities back in 2014. The same intercollegiate team announced in the journal Nature on Monday that they’ve now managed to implant those cells into mice that have been genetically designed to suffer from Type 1 diabetes — without the cells being rejected. Even more impressive, the diabetic mice produced their own insulin during the 174-day study period, eliminating the need for daily injections . Instead, patients would simply need “booster” injections of beta cells once every few years. This method “has the potential to provide diabetics with a new pancreas that is protected from the immune system, ” study co-author Daniel Anderson said in a statement, “which would allow them to control their blood sugar without taking drugs.” Human trials are expected to begin within the next few years. [Image Credit: Getty] Via: Gizmodo Source: Nature

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New stem cell treatment could ‘cure’ type 1 diabetes

Ransomware Hits Three Indian Banks, Causes Millions In Damages

An anonymous reader writes: Ransomware has locked computers in three major Indian banks and one pharmaceutical company. While the ransom note asks for 1 Bitcoin, so many computers have been infected that damages racked up millions of dollars. According to an antivirus company that analyzed the ransomware, it’s not even that complex, and seems the work of some amateur Russians. Read more of this story at Slashdot.

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Ransomware Hits Three Indian Banks, Causes Millions In Damages

Finally Calculated: All the Legal Positions In a 19×19 Game of Go

Reader John Tromp points to an explanation posted at GitHub of a computational challenge Tromp coordinated that makes a nice companion to the recent discovery of a 22 million-digit Mersenne prime. A distributed effort using pooled computers from two centers at Princeton, and more contributed from the HP Helion cloud, after “many hiccups and a few catastrophes” calculated the number of legal positions in a 19×19 game of Go. Simple as Go board layout is, the permutations allowed by the rules are anything but simple to calculate: “For running an L19 job, a beefy server with 15TB of fast scratch diskspace, 8 to 16 cores, and 192GB of RAM, is recommended. Expect a few months of running time.” More: Large numbers have a way of popping up in the game of Go. Few people believe that a tiny 2×2 Go board allows for more than a few hundred games. Yet 2×2 games number not in the hundreds, nor in the thousands, nor even in the millions. They number in the hundreds of billions! 386356909593 to be precise. Things only get crazier as you go up in boardsize. A lower bound of 10^10^48 on the number of 19×19 games, as proved in our paper, was recently improved to a googolplex. (For anyone who wants to double check his work, Tromp has posted as open source the software used.) Read more of this story at Slashdot.

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Finally Calculated: All the Legal Positions In a 19×19 Game of Go

Symantec Disavows Business Partner Caught Running a Tech Support Scam

An anonymous reader writes: Malwarebytes has caught one of Symantec’s resellers running a tech support scam that was scaring users into thinking they were infected with malware and then graciously offering to sell Symantec’s security software at inflated rates. Malwarebytes played along with their scam and found out the company behind it was Silurian Tech Support, located somewhere in North India (surprised?).Symantec told El Reg that it terminated the reseller’s contract and will work with law enforcement to defend its brand and intellectual property. Read more of this story at Slashdot.

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Symantec Disavows Business Partner Caught Running a Tech Support Scam

Intel Compute Stick review (2016): Second time’s a charm

I had high hopes for Intel’s original Compute Stick , but it ended up being a massive disappointment. Sure, it was cool to have a fully functional computer the size of a few thumb drives. But it was awfully slow and limited in some truly baffling ways (only one USB port?!). Now with Intel’s second-gen Compute Stick ($159), it’s another story entirely. It may look similar, but it packs in enough upgrades — a faster processor, better networking and more USB ports — to actually make it a usable computer. Hardware The first Compute Stick felt like a prototype that left Intel’s labs before designers ever laid their eyes on it. This new model, on the other hand, looks and feels like a solid piece of consumer kit. Instead of a boring rectangular design, it’s got smooth curves and perforated openings for its tiny fans (previously, they looked like cheap fan grilles molded into plastic). Even though it’s a device that’ll mostly live behind monitors, it’s also meant to be portable, so being attractive is a plus as you’re bound to show it off. It feels more solid in your hand, thanks to a tasteful balance of matte and glossy plastic. Heck, even the placement of the Intel Inside logo seems better (it’s now lower on the device instead of in the middle, and with less garish coloring). Intel also included two USB ports this time around (one of them USB 3.0), so that you can connect a keyboard and mouse without resorting to a hub. (If you were one of the readers who thought I was being unfair by complaining about the first model’s single USB port, this is why. It’s not as if Intel couldn’t fit in another port the first time around, and a USB hub kind of defeats the purpose of such a compact device!) I tested the Compute Stick with a wireless keyboard and mouse, so I only needed to use one of the USB ports for their wireless dongle. But the extra port came in handy for transferring files and updating the BIOS without removing my input devices. Once again, the Compute Stick features a microSD slot for an additional 128GB of storage (on top of the 32GB of internal storage). There’s also a micro-USB port for the power adapter. You still need to plug it into an AC adapter, unfortunately, which makes it a tad less portable than it may appear at first. An Intel spokesperson said the company is looking into the “superMHL” standard, which could power future models entirely over HDMI. A small power button lives on the side of the Compute Stick, and this time around there’s a small cap to protect the HDMI connector. That should make it less dangerous to chuck it in your bag or pocket. If your HDMI ports are too crowded on your TV or monitor, Intel also packs in a small HDMI extension cord to give the Compute Stick a bit of breathing room. Setup and performance Installing the Compute Stuck was a cinch: I plugged it into my TV, connected the power adapter and plugged in the wireless dongle for my keyboard and mouse. It booted up immediately, and it took about four minutes for me to run through the initial Windows 10 setup process. After a reboot, it took another five minutes to plug in my Windows login details and wait for my user account to bake. That may seem a tad lengthy, but it’s on par with what I’ve seen setting up other Atom-based computers. PCMark7 3DMark06 3DMark11 ATTO (top disk speeds) Intel Compute Stick (2016) (1.4Ghz Atom x5-Z8400) 2, 419 2, 677 E610 / P382 92 MB/s (reads); 176 MB/s (writes) Intel Compute Stick (2015) (1.3GHz Atom Z3735F, Intel HD Graphics) 2, 320 1, 544 E266 / P173 77 MB/s (reads); 175 MB/s (writes) Microsoft Surface 3 (1.6GHz Atom x7-Z8700, Intel HD Graphics) 2, 839 3, 920 E941 / P552 163 MB/s (reads); 39.2 MB/s (writes) HP Stream 11 (2.16Ghz Intel Celeron N2840, Intel HD Graphics) 2, 607 N/A E374 168 MB/s (reads); 72 MB/s (writes) Once I hit the desktop, I immediately opened up Microsoft Edge and opened YouTube to test the Compute Stick’s media capabilities. It loaded up 1080p streams far faster than the previous model, though there was a bit of slowdown as I swapped between fullscreen and windowed views. But, feeling a bit cheeky, I also played some 4K streams and was surprised to see the Compute Stick managing them just fine. Occasionally it would get stuck on a frame and then catch itself back up, but the fact that it was able to load and play 4K without any buffering or major slowdown is still notable. Of course, the Compute Stick’s 1.44GHz Atom x5-z8400 processor was pretty much maxed out while playing 4K, but that’s not terribly surprising. After suffering through slow download speeds with the original Compute Stick, I was surprised to see that the new model doesn’t have any issue bringing down large 4K files. That’s mainly due to improved networking hardware: a 2×2 antenna array and 802.11ac WiFi support. The first Compute Stick only had a single WiFi antenna, which limited its overall speed and also made it tough to both download and upload data at the same time. Emboldened by its YouTube performance, I started using the Compute Stick as I would a typical computer. I loaded up several browsers with multiple tabs, opened up multiple programs in the background, including Spotify and Slack, and proceeded to go about my usual workflow. And, surprisingly, the experience wasn’t half bad. The Compute Stick slowed down a bit as I quickly alt-tabbed between programs, or streamed Spotify music while downloading large files, but whereas the first model felt too slow for comfort, this one simply feels comfortable. It wasn’t long before I felt the limits of its limited 2GB of RAM, though. While that used to be all you needed for a decent computing experience, these days browsers and most web pages eat up memory quickly. Hopefully next year Intel will be able to include 4GB of RAM in its base Compute Stick model (which this year’s faster upcoming models all include). As the benchmarks show, this Compute Stick is significantly faster when it comes to 3D. And while its PCMark7 are only marginally faster, I wouldn’t worry too much about that. Real-world performance matter a lot more to me than benchmark numbers, and doing just about everything on the Compute Stick felt significantly faster than last year’s model. It even managed to play some simple games, like Hotline Miami 2 and Undertale , which the original version couldn’t even touch. One potential issue for some: The Compute Stick’s tiny fan made itself known while I was running benchmarks, even though it was about 12 feet away from me in my living room. Thankfully, I didn’t hear it much during normal usage. But it’s not the sort of device I’d leave running high-load tasks (or at least, as much as you can make the Atom x5 do) running in my bedroom overnight. Mostly, I’m impressed by just how versatile the new Compute Stick happens to be. It’s more than powerful enough for kiosks and computer labs, but it can also be a solid cheap home theater computer. I was able to access network shares on my desktop and play back HD video files without any issue. Configuration options and the competition This year, Intel isn’t going to offer a cheaper model of the Compute Stick (last year, there was a Linux-focused model for $110 with a 8GB of storage and 1GB of RAM), but that seems like a wise choice. Instead, the company is going a bit higher end. Upcoming Compute Stick models will include Core M3 and Core M5 processors for $399 and $499, respectively. They also pack in 4GB of RAM, which means we should expect performance along the lines of slower Ultrabooks, and three USB ports (two on the power adapter). Intel says both models can spit out 4K video at 30 Hz, and the Core m5 version (which doesn’t come with an OS) also includes its VPro hardware-level security technology. Of course, they don’t offer the same amount of value as the cheaper $159 model, but I’m still intrigued to see how much power Intel can stuff into this tiny case. You can bet we’ll put them through their paces when they’re available. You might be tempted to grab last year’s Compute Stick at an even cheaper price, or the (practically identical) Lenovo Ideacentre stick for around $100, but I’d advise against that unless you enjoy torturing yourself. There are also a handful of other PC sticks out there, but most of them use slower CPUs than the new Compute Stick. If you just want a simple stick for web browsing, the $85 ASUS Chromebit will let you bring ChromeOS to any monitor. (I didn’t include this in the benchmark table, but the new Compute Stick clocked in a 550ms SunSpider browser test score while running Edge, compared to the Chromebit’s slower score of 780ms score. Do with that what you will.) Wrap-up Well, Intel did it. The Compute Stick bundles just about everything you’d need for a basic computer into a compact, inexpensive package, and unlike its predecessor, it works. It’s no wonder we named it one of our Best of CES finalists this year. If you’ve got a spare monitor lying around, you could easily turn that into a machine for your kids, or some sort of household kiosk. And no matter how you use it, it’ll make you rethink your notion of what a PC can be.

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Intel Compute Stick review (2016): Second time’s a charm

Caltech Astronomers Say a Ninth Planet Lurks Beyond Pluto

sciencehabit writes: The solar system may have a new ninth planet. Today, two scientists announced evidence that a body nearly the size of Neptune — but as yet unseen — orbits the sun every 15, 000 years. During the solar system’s infancy 4.5 billion years ago, they say, the giant planet was knocked out of the planet-forming region near the sun. Slowed down by gas, the planet settled into a distant elliptical orbit, where it still lurks today. Here’s a link to the full academic paper published in The Astronomical Journal. Read more of this story at Slashdot.

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Caltech Astronomers Say a Ninth Planet Lurks Beyond Pluto