With the rise of increasingly large smartphones, flip phones have unfortunately gone out of style.
There's nothing more satisfying than hanging up on someone by aggressively snapping your phone shut, and those versions with a mini-screen on the front predated Galaxy S6 Edge-style 'peek' technology by years.
Fortunately, you'll soon be able to experience all this once again, because Samsung is making a fliphone. Yes, seriously.
Early images and specs of the phone, which is being named the SM-W2016, have been uncovered by the industry insiders at SamMobile. It's a smartphone at heart, but packaged in a much more retro design.
The Android phone has two screens (one either side of the opening top half), an octa-core 64-bit processor with 3GB of RAM, 64GB of storage and runs Android 5.1.1 Lollipop.
The phone might look like it's straight out of 2004, but it actually rivals many leading smartphones in terms of hardware.
With a glass and metal design reminiscent of the Galaxy S6, it could prove pretty popular.
It's actually quite difficult to buy a phone these days that isn't a buttonless smartphone - leaving people who prefer a physical keyboard (they still exist, as the Blackberry Priv shows) without many options.
The market for this phone might be fairly niche, but if it satisfies users' nostalgia and actually works it could be a success.
(IT) is the application of computers and telecommunications equipment to store, retrieve, transmit and manipulate data.
Wednesday, July 1, 2015
Monday, June 1, 2015
Google+ gets major redesign with big focus on Communities and Collections
Google has begun the process of rolling out a major redesign of Google+, featuring a new, simpler look that puts Communities and Collections at the center of everything. These are the areas of Google+ that its most loyal users have stuck with and remain deeply engaged in, even as other features like Photos have been broken out in hopes of reaching a more mainstream audience. "With Collections and Communities, discovering amazing things is simple: just follow or join whatever happens to pique your interests," said Google's Luke Wroblewski. The service's home stream has also been redesigned, with Google claiming that it's now "easier to post, search, connect, and keep up with great content."
The new Google+ overhaul is available today if you opt in, and Google says mobile updates are coming soon. (Not all features have been brought over, so you might be switching between the classic and new views until they both offer all the same functionality.) "While this is an exciting new beginning for us, we’re definitely not done yet," said Wroblewski. "We got here by listening and learning, and will continue doing so." Google+ is finally shedding its "social network" pressures and becoming the focused and intimate destination that we've always wanted.
The new Google+ overhaul is available today if you opt in, and Google says mobile updates are coming soon. (Not all features have been brought over, so you might be switching between the classic and new views until they both offer all the same functionality.) "While this is an exciting new beginning for us, we’re definitely not done yet," said Wroblewski. "We got here by listening and learning, and will continue doing so." Google+ is finally shedding its "social network" pressures and becoming the focused and intimate destination that we've always wanted.
Friday, May 1, 2015
9 tips for staying safe as you shop online
Americans plan to do as much as 15% of their holiday shopping online this year. USA TODAY asked computer security experts for their tips on how to stay safe as you buy.
1. Just say no to free Wi-Fi
Resist the temptation to use free public Wi-Fi. It is a trivial matter for hackers to eavesdrop on your connection and steal your information.
Florindo Gallicchio, Optiv
2. Avoid e-mails offering deals
Don't click on email offers. Instead, go directly to the retailer’s website to find deals. Same thing goes for promo codes — don't click those links to copy the code, but instead copy it and use it directly on the retailer’s website. Even the most legitimate-looking email could be from hackers phishing for account info.
John Kuhn, IBM Security
3. Don’t be lazy
If you need to create an account with an online retailer, do not use the same email address and password you use anywhere else. This is such old advice it may seem obvious, but many attacks are still successful because people reuse the same combination of email address and password in multiple sites, and attackers know it. It’s not worth the risk.
Geoff Webb, NetIQ
4. Use apps, not your phone’s web browser
Apps for sites like Amazon and Wayfair typically have an extra layer of security and encryption, making them safer to use when you’re out in public.
Morey Haber, BeyondTrust
5. Eschew convenience for security
Never save your credit card information in retail sites and web browsers. If they haven't stored it, it can't be stolen from them.
John Kuhn, IBM Security
6. Credit, not debit
When shopping online, use your credit card instead of your debit card. If something goes awry such as making a bad purchase with a malicious online retailer, it is usually easier to resolve any issues with your credit card company than with your bank (or at least the money is not deducted from your checking or savings account).
Lane Thames,Tripwire
7. Open your statements
Pay extra attention to your bank and credit card statements come January and February. Even small charges you don’t remember making can be a sign of fraud. If you see an unknown charge, call your bank immediately and report it.
Tim Erlin, Tripwire
8. Embrace phone-based payments
Retail data breaches have led to the compromise of millions of credit cards. Mobile payment technologies, like Android Pay and Apple Pay, cannot be cloned like traditional magnetic stripe cards. Consider using these technologies in your holiday shopping to keep your cards safe from thieves.
Ryan Olson, Palo Alto Networks
9. Don't leave your phone unlocked
For God’s sake, set your phone to require PIN or fingerprint to access it!
Jeff Schilling, Armor
1. Just say no to free Wi-Fi
Resist the temptation to use free public Wi-Fi. It is a trivial matter for hackers to eavesdrop on your connection and steal your information.
Florindo Gallicchio, Optiv
2. Avoid e-mails offering deals
Don't click on email offers. Instead, go directly to the retailer’s website to find deals. Same thing goes for promo codes — don't click those links to copy the code, but instead copy it and use it directly on the retailer’s website. Even the most legitimate-looking email could be from hackers phishing for account info.
John Kuhn, IBM Security
3. Don’t be lazy
If you need to create an account with an online retailer, do not use the same email address and password you use anywhere else. This is such old advice it may seem obvious, but many attacks are still successful because people reuse the same combination of email address and password in multiple sites, and attackers know it. It’s not worth the risk.
Geoff Webb, NetIQ
4. Use apps, not your phone’s web browser
Apps for sites like Amazon and Wayfair typically have an extra layer of security and encryption, making them safer to use when you’re out in public.
Morey Haber, BeyondTrust
5. Eschew convenience for security
Never save your credit card information in retail sites and web browsers. If they haven't stored it, it can't be stolen from them.
John Kuhn, IBM Security
6. Credit, not debit
When shopping online, use your credit card instead of your debit card. If something goes awry such as making a bad purchase with a malicious online retailer, it is usually easier to resolve any issues with your credit card company than with your bank (or at least the money is not deducted from your checking or savings account).
Lane Thames,Tripwire
7. Open your statements
Pay extra attention to your bank and credit card statements come January and February. Even small charges you don’t remember making can be a sign of fraud. If you see an unknown charge, call your bank immediately and report it.
Tim Erlin, Tripwire
8. Embrace phone-based payments
Retail data breaches have led to the compromise of millions of credit cards. Mobile payment technologies, like Android Pay and Apple Pay, cannot be cloned like traditional magnetic stripe cards. Consider using these technologies in your holiday shopping to keep your cards safe from thieves.
Ryan Olson, Palo Alto Networks
9. Don't leave your phone unlocked
For God’s sake, set your phone to require PIN or fingerprint to access it!
Jeff Schilling, Armor
Wednesday, April 1, 2015
Terrifyingly, An Airport Still Runs On Windows 3.1
Orly Airport in France recently suffered a major technical hitch, grounding dozens of flights and causing significant disruption to thousands. Well now the cause of the problem has been revealed it turns out that Orly's Air Traffic Control system runs on Windows 3.1.
That's right, it's running on a piece of software that was around when Floppy Disks were big and the idea of CD-ROMs seemed like the scary future.
According to Vice News, the culprit was a piece of software called DECOR which is used during take off and landings. The software allows Air Traffic Control to provide pilots with a Runway Visual Distance, so how far the pilot can see down a runway.
With the software effectively down, the controllers would have been unable to notify pilots of their visibility if a fog had descended or bad weather had rolled in.
According to Alexandre Fiacre, secretary general of France's UNSA-IESSA air traffic controller union, the company that manages both Orly Airport and Charles de Gaulle are using software that's between 10-20 years old.
The French Transportation Ministry has reportedly vowed to update the systems by 2017.
That's right, it's running on a piece of software that was around when Floppy Disks were big and the idea of CD-ROMs seemed like the scary future.
According to Vice News, the culprit was a piece of software called DECOR which is used during take off and landings. The software allows Air Traffic Control to provide pilots with a Runway Visual Distance, so how far the pilot can see down a runway.
With the software effectively down, the controllers would have been unable to notify pilots of their visibility if a fog had descended or bad weather had rolled in.
According to Alexandre Fiacre, secretary general of France's UNSA-IESSA air traffic controller union, the company that manages both Orly Airport and Charles de Gaulle are using software that's between 10-20 years old.
The French Transportation Ministry has reportedly vowed to update the systems by 2017.
Sunday, March 1, 2015
Latest Craze for Chinese Parents: Preschool Coding Classes
Wu Pei began teaching her 6-year-old son to code this year, thinking he’d enjoy learning a skill that might boost his future job prospects in an increasingly digitized world. Now, she runs classes in Nanjing, China, and is helping more than 100 parents introduce their children to coding.
The 35-year-old former computer programmer with Foxconn Technology Group is tapping growing demand from parents intent on preparing their preschoolers for a world in which Oxford University researchers predict half the jobs in some countries may be eliminated by robots and computers.
Similar classes are taking off across China. Reynold Ren has taught about 150 primary school-age children in Beijing to use Scratch, a project developed by the MIT Media Lab and Arduino, which enables users to create interactive objects such as robots. In Hong Kong, about 2,500 students have taken courses that Michelle Sun runs at her First Code Academy.
“Teaching the next generation coding is something that should be elevated to a strategical national importance,” said Wang Jiulin, the Xi’an-based creator of Kidscode.cn, a website that shares free information and courses. “Even today, the majority of programmers in China can only perform very basic- level tasks and there’s huge demand for top notch coders.”
Coding Classes
Wu thought over weeks about how she could introduce the fundamentals of coding to preschoolers -- who are only just starting to learn math and Chinese -- in a way they could understand.
She settled on showing them a 3-by-3 unit grid on a board and invited them to play a game in which the students were asked to identify locations using simple directions, such as up, down, right and left. She then switched to a number system and asked the children to pinpoint locations using coordinates.
When students are familiar with the concept of an X and Y axis, she teaches them to play simple games involving airplanes on Scratch. Once they are hooked, she encourages them to learn how to create similar games themselves.
“Usually, you need a game to get them interested, and then introduce new concepts,” Wu said.
Nanjing mother Zhang Minyan began encouraging her 5-year- old daughter to learn coding from Wu after watching a video of an American child who wrote an app for friends so they could share their views on Canadian singer Justin Bieber, she said. Before that, Zhang hadn’t thought it was necessary for children to learn.‘Big impression’
“That made a big impression on me,” Zhang, 32, recalls. “I thought, since my child is playing games on an iPad everyday already, why not give her some guidance and let her learn something in the process?”
Also children are learning to code in other countries and Zhang doesn’t want her daughter to be left behind, she says.
Encouraging children to learn how to write the instructions for computer programs may help China move up the technology value chain, making it more of an innovator of software and digital tools, rather than a mass manufacturer and a component supplier. As it is now, the world’s second-largest economy lags behind at least 16 countries in Europe and the U.S. in putting coding on the national school curriculum.
Back Seat
“Schools in China have IT lessons and some even teach coding, but these classes take a back seat compared with other subjects that determine how students are rated on their academic performance,” Wu, the coding teacher, said. “They fail to realize coding education is something that will be very important for the future.”
Barack Obama, who became the first president to write a line of code last December, agrees it’s something children should be taught. “People are not born coders,” Obama said in July. “What happens is, kids get exposed to this stuff early and they learn. They soak it up like sponges.”
There were 1.02 million software developer jobs in the U.S. in 2012, according to the Bureau of Labor Statistics, which estimates that number will jump 22 percent by 2022, spurred by “a large increase in the demand for computer software.”
“It’s totally possible that your child could create a million-dollar app when they’re 12 years old -- you don’t need a masters’ degree to do that,” said Wayne Xiong, a partner at China Growth Capital, a Beijing-based venture capital fund which manages about $500 million of assets. “An education system where you need at least 21 years to test your return on investment is high-risk and unreasonable.”
Coding Machines?
Not everyone agrees that coding promises to secure a child’s future. Automation may even make it possible for machines to take over the majority of coding tasks in a decade, said Tom Davenport, a professor of IT and Management at Babson College in Wellesley, Massachusetts. “It’s not really necessary for millions of 3-year-olds to be trained in programming,” he said.
Predicting which professions will be needed most in the future can be a crapshoot. Nine of the 10 most in-demand jobs in 2012 didn’t exist in 2003, the World Economic Forum said in September.
Wu says she’s not counting on coding to make her child successful. Rather, she sees it as “another tool to express himself” and part of the mandatory digital skills people worldwide are likely to need in decades to come. Vanishing jobs
“A lot the jobs from my parents’ generation don’t exist anymore and I think about what that means in 20 years,” she said. “When our kids grow up they will be competing globally and by then coding will be a skill as common as English.”
Wu takes comfort in knowing that coding has helped improve her boy’s logic and reasoning.
Her son, Feng Yiran, spends about 10 minutes after school creating games that he wants to play.
“I actually think it’s pretty fun,” said Feng, who recently created a game about a dragon-battling knight. “At first my mom wanted me to learn, now I’m the one asking.”
The 35-year-old former computer programmer with Foxconn Technology Group is tapping growing demand from parents intent on preparing their preschoolers for a world in which Oxford University researchers predict half the jobs in some countries may be eliminated by robots and computers.
Similar classes are taking off across China. Reynold Ren has taught about 150 primary school-age children in Beijing to use Scratch, a project developed by the MIT Media Lab and Arduino, which enables users to create interactive objects such as robots. In Hong Kong, about 2,500 students have taken courses that Michelle Sun runs at her First Code Academy.
“Teaching the next generation coding is something that should be elevated to a strategical national importance,” said Wang Jiulin, the Xi’an-based creator of Kidscode.cn, a website that shares free information and courses. “Even today, the majority of programmers in China can only perform very basic- level tasks and there’s huge demand for top notch coders.”
Coding Classes
Wu thought over weeks about how she could introduce the fundamentals of coding to preschoolers -- who are only just starting to learn math and Chinese -- in a way they could understand.
She settled on showing them a 3-by-3 unit grid on a board and invited them to play a game in which the students were asked to identify locations using simple directions, such as up, down, right and left. She then switched to a number system and asked the children to pinpoint locations using coordinates.
When students are familiar with the concept of an X and Y axis, she teaches them to play simple games involving airplanes on Scratch. Once they are hooked, she encourages them to learn how to create similar games themselves.
“Usually, you need a game to get them interested, and then introduce new concepts,” Wu said.
Nanjing mother Zhang Minyan began encouraging her 5-year- old daughter to learn coding from Wu after watching a video of an American child who wrote an app for friends so they could share their views on Canadian singer Justin Bieber, she said. Before that, Zhang hadn’t thought it was necessary for children to learn.‘Big impression’
“That made a big impression on me,” Zhang, 32, recalls. “I thought, since my child is playing games on an iPad everyday already, why not give her some guidance and let her learn something in the process?”
Also children are learning to code in other countries and Zhang doesn’t want her daughter to be left behind, she says.
Encouraging children to learn how to write the instructions for computer programs may help China move up the technology value chain, making it more of an innovator of software and digital tools, rather than a mass manufacturer and a component supplier. As it is now, the world’s second-largest economy lags behind at least 16 countries in Europe and the U.S. in putting coding on the national school curriculum.
Back Seat
“Schools in China have IT lessons and some even teach coding, but these classes take a back seat compared with other subjects that determine how students are rated on their academic performance,” Wu, the coding teacher, said. “They fail to realize coding education is something that will be very important for the future.”
Barack Obama, who became the first president to write a line of code last December, agrees it’s something children should be taught. “People are not born coders,” Obama said in July. “What happens is, kids get exposed to this stuff early and they learn. They soak it up like sponges.”
There were 1.02 million software developer jobs in the U.S. in 2012, according to the Bureau of Labor Statistics, which estimates that number will jump 22 percent by 2022, spurred by “a large increase in the demand for computer software.”
“It’s totally possible that your child could create a million-dollar app when they’re 12 years old -- you don’t need a masters’ degree to do that,” said Wayne Xiong, a partner at China Growth Capital, a Beijing-based venture capital fund which manages about $500 million of assets. “An education system where you need at least 21 years to test your return on investment is high-risk and unreasonable.”
Coding Machines?
Not everyone agrees that coding promises to secure a child’s future. Automation may even make it possible for machines to take over the majority of coding tasks in a decade, said Tom Davenport, a professor of IT and Management at Babson College in Wellesley, Massachusetts. “It’s not really necessary for millions of 3-year-olds to be trained in programming,” he said.
Predicting which professions will be needed most in the future can be a crapshoot. Nine of the 10 most in-demand jobs in 2012 didn’t exist in 2003, the World Economic Forum said in September.
Wu says she’s not counting on coding to make her child successful. Rather, she sees it as “another tool to express himself” and part of the mandatory digital skills people worldwide are likely to need in decades to come. Vanishing jobs
“A lot the jobs from my parents’ generation don’t exist anymore and I think about what that means in 20 years,” she said. “When our kids grow up they will be competing globally and by then coding will be a skill as common as English.”
Wu takes comfort in knowing that coding has helped improve her boy’s logic and reasoning.
Her son, Feng Yiran, spends about 10 minutes after school creating games that he wants to play.
“I actually think it’s pretty fun,” said Feng, who recently created a game about a dragon-battling knight. “At first my mom wanted me to learn, now I’m the one asking.”
Sunday, February 1, 2015
NASA's chemical 'laptop' would help find life on other planets
Planetary rovers can already find potential signs of life, but they're not really meant to find life itself. NASA may have just the device to find that concrete evidence, though. Its newly tested Chemical Laptop is the first device built to detect amino acids and fatty acids (the telltale signs of life as we know it) on other worlds. The battery-powered device needs liquid samples to work, but it has a coffee machine-like mechanism that uses hot water to get the organic material out.
Any practical exploratory uses are years away given that the next Martian rover won't touch down until 2021, and landings on other celestial bodies (such as Jupiter's moon Europa, or Saturn's Enceladus) would be even more distant. However, the Chemical Laptop wouldn't go to waste here on Earth: it could help with in-the-field environmental tests, or bust companies peddling counterfeit drugs. And even if it doesn't find any short-term uses, it might pay off if it delivers the smoking gun evidence that humans aren't alone.
Any practical exploratory uses are years away given that the next Martian rover won't touch down until 2021, and landings on other celestial bodies (such as Jupiter's moon Europa, or Saturn's Enceladus) would be even more distant. However, the Chemical Laptop wouldn't go to waste here on Earth: it could help with in-the-field environmental tests, or bust companies peddling counterfeit drugs. And even if it doesn't find any short-term uses, it might pay off if it delivers the smoking gun evidence that humans aren't alone.
Thursday, January 1, 2015
The Fight For The Fastest Supercomputer
In 2015, China claimed the record for the world’s most powerful supercomputer—for the third year in a row. The Tianhe-2 crushed the U.S.’s Titan in the esteemed TOP500 supercomputer ranking. And that from a country with only 7 percent of the world’s supercomputers (compared with the U.S.’s 46 percent). Computing power translates into economic power and national security, so falling behind should come as a wake-up call. This should be our “Sputnik moment.”1
As with the rush to orbit, “this is an international race,” says Horst Simon, deputy director at Lawrence Berkeley National Laboratory and co-editor of the TOP500. The next mile marker will be achieving “exascale” computation, which means performing 1 quintillion calculations per second (about 30 times faster than Tianhe-2). Whoever gets there first could revolutionize weather forecasting, design hyperefficient airliners, and fight disease with precision medicine—not to mention corner the market for computing power.
The U.S. was once the undisputed front-runner, but since the Great Recession, our pace (read: investment) has slumped, Simon says. That’s not unique to the U.S.; investment has slowed worldwide. But “computing transforms itself on an exponential timescale. If you sleep for three years, you’re two generations behind,” he says. “We slept for five years.” Now China might be on track to beat us to exascale by the early 2020s.
The U.S. was once the undisputed front-runner, but since the Great Recession, our pace has slumped.
Reaching exascale will be far harder than achieving historic gains though. We’re hitting a power wall, says Steve Scott, chief technology officer at supercomputing firm Cray. “We can no longer run all our transistors full out; it would generate too much heat and literally burn up the chips.” In other words, improvements in power efficiency aren’t keeping up with Moore’s Law.2
Instead, Scott says, we may need to rethink computing. If we can replace today’s brawny chips with lots of simpler, more energy-efficient processors, they could handle enormous series of computations in parallel, like yoking an army of ants rather than a few hungry elephants. But that means figuring out how to break down a computational problem into tiny parts for separate and nonsequential processing—a nightmare for software developers. (Which explains why such a leap has not yet been made.)
The U.S. government is engineering a comeback, if slowly. In July, the Obama administration established a National Strategic Computing Initiative to get back into international running. “It’s an all-out approach,” says Scott. No longer will agencies pursue isolated and arguably underfunded supercomputing goals—so long as Congress ponies up the extra cash. The aim is to coordinate government agencies, academic institutions, and private companies.
“We need to begin strategically ramping up our investment now,” says Tom Kalil, deputy director for technology and innovation in the White House’s Office of Science and Technology Policy. If we can combine the U.S.’s collective intellectual forces, as in the space race, we might be the first to reach the proverbial exa-moon.
As with the rush to orbit, “this is an international race,” says Horst Simon, deputy director at Lawrence Berkeley National Laboratory and co-editor of the TOP500. The next mile marker will be achieving “exascale” computation, which means performing 1 quintillion calculations per second (about 30 times faster than Tianhe-2). Whoever gets there first could revolutionize weather forecasting, design hyperefficient airliners, and fight disease with precision medicine—not to mention corner the market for computing power.
The U.S. was once the undisputed front-runner, but since the Great Recession, our pace (read: investment) has slumped, Simon says. That’s not unique to the U.S.; investment has slowed worldwide. But “computing transforms itself on an exponential timescale. If you sleep for three years, you’re two generations behind,” he says. “We slept for five years.” Now China might be on track to beat us to exascale by the early 2020s.
The U.S. was once the undisputed front-runner, but since the Great Recession, our pace has slumped.
Reaching exascale will be far harder than achieving historic gains though. We’re hitting a power wall, says Steve Scott, chief technology officer at supercomputing firm Cray. “We can no longer run all our transistors full out; it would generate too much heat and literally burn up the chips.” In other words, improvements in power efficiency aren’t keeping up with Moore’s Law.2
Instead, Scott says, we may need to rethink computing. If we can replace today’s brawny chips with lots of simpler, more energy-efficient processors, they could handle enormous series of computations in parallel, like yoking an army of ants rather than a few hungry elephants. But that means figuring out how to break down a computational problem into tiny parts for separate and nonsequential processing—a nightmare for software developers. (Which explains why such a leap has not yet been made.)
The U.S. government is engineering a comeback, if slowly. In July, the Obama administration established a National Strategic Computing Initiative to get back into international running. “It’s an all-out approach,” says Scott. No longer will agencies pursue isolated and arguably underfunded supercomputing goals—so long as Congress ponies up the extra cash. The aim is to coordinate government agencies, academic institutions, and private companies.
“We need to begin strategically ramping up our investment now,” says Tom Kalil, deputy director for technology and innovation in the White House’s Office of Science and Technology Policy. If we can combine the U.S.’s collective intellectual forces, as in the space race, we might be the first to reach the proverbial exa-moon.
The U.S. government is engineering a comeback, if slowly.
1. In 1957, the Soviet Union launched the first satellite, Sputnik I, into orbit, spurring America to create NASA and DARPA, as well as train a generation of scientists and engineers.
2. In 1975, Intel co-founder Gordon E. Moore observed that the processing power (i.e., number of transistors) of an integrated circuit doubles every two years.
This article was originally published in the December 2015 issue of Popular Science.
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