Showing posts with label tech. Show all posts
Showing posts with label tech. Show all posts

Sunday, February 21, 2016

5 Tech Toys for Your Geeky Dog




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Thursday, February 18, 2016

Are You Safe From Cybercrime?




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In our Cybercrime Series, presented by Norton, Mashable explores some of the web’s greatest security breaches. From celebrity hacks to mobile hacks to Facebook hacks — these anecdotes will remind why it’s always good to use protection, and that rock-solid passwords and two-factor authentication are the first step toward security.


Take a look at the summaries below and click through to read the whole article. You’ll be glad you did.




1. 65% of Internet Users Are Cybercrime Victims [INFOGRAPHIC]


A Ponemon Institute survey of 583 U.S. companies found 90% had been hacked in the past 12 months. Of those companies, most admitted their networks had been breached more than once, and more than half expressed little to no confidence that they could ward off such attacks in the future.


In this stunning infographic, we tell you about password security, how cybercrime rates vary by country and calculate the financial costs of cybercrime.


See the infographic here.


2. 3 Social Media Hacks to Learn From


A good password is crucial, and the owners of six million leaked LinkedIn passwords learned that the hard way last summer, when the social network fell victim to a large-scale hack. And LinkedIn isn’t the only site that’s been compromised — Pinterest and Facebook have also been compromised. What went wrong?


Read the full story here.


3. 3 Celebrity Hacks to Learn From


Celebrities live in the public eye, and though they’re overexposed as it is, some hackers try to expose a bit more. The way you store your information and even the security questions you answer can put you at risk.


See what you can do to protect your devices and accounts so you don’t become the next Paris Hilton or Scarlett Johansson.


Read the full story here.


4. 4 Turning Points in Cybercrime History



Data breaches happen almost daily, and while they can affect the individuals and businesses, they can also transform the security industry altogether. And sometimes, they can even influence legislation.


“Security breaches are relatively immeasurable, but the economic impact is small compared to the loss of confidence in security from the populace and from customers,” Carl Herberger of security solutions company Radware, told Mashable.


Read the full story here.


5. Is Your Mobile Device Safe From Hackers?


With smartphone penetration hovering at 50%, the biggest threat to security could be in the palm of your hand. In fact, 40% of U.S. mobile users will click on an unsafe link this year, and the biggest vulnerability is related to apps. “While mobile hacks can happen in any number of ways, one of the most common access points is through insecure apps,” Zach Lanier, researcher at Veracode, told Mashable.


Read the full story here.


Have you been a victim of cybercrime? Tell us your story in the comments.


Read more: http://mashable.com/2012/11/19/cybercrime-recap/




Are You Safe From Cybercrime?

Apps and Software, cybercrime, Cybercrime Series, gadgets, Mobile, norton, tech

Tuesday, February 16, 2016

iPhone 5 Launch Plays it Safe. Can Apple Still Surprise Us?




Iphone-5-launch-plays-it-safe-can-apple-still-surprise-us--d3f5a96d32


Mashable OP-ED: This post reflects the opinions of the author and not necessarily those of Mashable as a publication.


Wednesday’s iPhone 5 launch had more than a touch of deja vu.


Apple CEO Tim Cook’s performance, though slightly more polished than in his last three product launch events, was largely a retread of his WWDC keynote. Cook still leads by getting out of the way, ceding the all-important announcement of the iPhone 5 to marketing chief Phil Schiller, just as he did at the new iPad launch earlier this year.


The order of events was pretty much by the numbers, too. We started with an update on Apple retail stores, moved on to new numbers for the Mac and the iPad, had the main event — the big reveal of the iPhone 5 and its new iPod brethren — and closed with a musical guest, in this case the Foo Fighters.


The big reveal, by the way, was a faintly ridiculous moment. The phone rose up from the stage on a podium while the house lights went down, so we could hardly see what we were supposed to be looking at. One longed for the days when Steve Jobs would simply whip a black sheet off a table.


A Leaky Ship


But Apple, it is becoming clear, is no longer the house that Jobs built. For one thing, it’s becoming so leaky that hardly a single detail of the iPhone 5 was not known in advance. If there was any doubt about the specifics, Apple PR accidentally erased them by posting press releases online just a little too early.


Compare that to the iPhone 4S launch at the very beginning of Cook’s tenure, where much of the media didn’t even get the device’s name in advance.



THE LATEST: iPhone 5 Unveiled | iPhone 5 vs. Competitors | More of iOS 6 | Thinner iPod Nano | iPod Touch With Siri | New iTunes | New iPhone Dock Connector | New Earbuds, EarPods


On the technology front, Apple is playing it about as safe as possible. The iPhone 5 has a slightly elongated screen, and feels significantly lighter than its predecessor. There’s a different dock connector and the headphone jack is on the bottom. That’s about all the changes the casual observer will notice when picking it up.


True, a great deal of work went into the minutiae of its design. Apple is not shy when it comes to geeking out about this. One entire video explained how the edges were hewn with diamond cutters, and at one point we got a baffling aside on how more than 700 different cover sections were designed for the camera lens.


This is a thoroughly solid and dependable gadget, the Volvo of the mobile world. But Apple is currently running a deficit in bold strokes, big visions, and entirely new products.


Indeed, possibly the most exciting things to come out of the event were the new EarPods, curious little periscope-like headphones designed to conform to the space available in the average ear, featuring four carefully notched speaker slits directing different spectrums of sound in just the right way. They look and feel entirely new.


When the headphones elicit more gasps than the phone itself, you know something’s not quite right.


Apple R&D Needs Some TLC


This could have something to do with the fact that Apple is still spending a mere 2% of its revenue on research and development. No other company in the tech world puts as little of their cash into R&D, as a percentage, with the sole exception of Dell.


You could argue that all of Apple engineering and design could fall under the R&D heading, given how inventive the company is when it comes to, say, squeezing more power into the same size phone. Still, there’s a world of difference between innovation in the same product and innovation that leads to entirely new products.


The latter is what we used to see from Apple. The former is what we’re currently getting.


Of course, this could all become moot next month, when Apple is said to be planning another event to launch the all-new 7-inch iPad Mini, and possibly the iTV too. Let’s hope we have a day full of surprises to look forward to.


Read more: http://mashable.com/2012/09/12/apple-iphone-5-launch-review/




iPhone 5 Launch Plays it Safe. Can Apple Still Surprise Us?

apple, gadgets, iPhone, iphone 5, tech, Tim Cook

IEEE"s Robot iPad App is Robot Heaven




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Monday, February 15, 2016

Sprint Rolling Out 4G LTE Network to 100 Cities




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Sprint announced on Monday that it will be expanding its 4G LTE network to more than 100 cities in the upcoming months.


The company — which began its 4G LTE network rollout with 15 cities in July 2012 — will be adding the service to more major areas including Chicago, Boston, New York City and Los Angeles. Smaller cities such as Rockford, Ill. and Salisbury, Md. will also be getting the network.


4G LTE is about ten times faster than 3G, allowing mobile users to load websites more seamlessly.


Sprint said construction has already started within those regions. For a full list of which cities are scheduled to get the network, click here.




“During the pre-launch phase, customers with capable 4G LTE devices may begin to see 4G LTE coverage in these areas and are welcome to use the network even before it officially launches,” Sprint said in a statement. “Sprint plans to announce commercial availability of 4G LTE in these cities in the coming months, at which point we expect coverage, performance and reliability to get even better.”


The company is also doing an overhaul of its 3G infrastructure to improve wireless signal strength, in-building coverage and less dropped calls.


“We know our customers depend on their mobile devices as their primary source of communication, business connectivity and entertainment,” said Bob Azzi, senior vice president of network at Sprint. “We want to deliver a network that delivers mobile access, productivity and entertainment at a highly competitive price point.”


Read more: http://mashable.com/2012/09/10/sprint-4g-lte-network-cities/




Sprint Rolling Out 4G LTE Network to 100 Cities

Apps and Software, Dev & Design, LTE, Mobile, sprint, tech

Sunday, January 3, 2016

Mira the Supercomputer Builds Universes




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mira8.png


Cosmology is the most ambitious of sciences. Its goal, plainly stated, is to describe the origin, evolution, and structure of the entire universe, a universe that is as enormous as it is ancient.


Surprisingly, figuring out what the universe used to look like is the easy part of cosmology. If you point a sensitive telescope at a dark corner of the sky, and run a long exposure, you can catch photons from the young universe, photons that first sprang out into intergalactic space more than ten billion years ago. Collect enough of these ancient glimmers and you get a snapshot of the primordial cosmos, a rough picture of the first galaxies that formed after the Big Bang.


Thanks to sky-mapping projects like the Sloan Digital Sky Survey, we also know quite a bit about the structure of the current universe. We know that it has expanded into a vast web of galaxies, strung together in clumps and filaments, with gigantic voids in between.


How do you follow a galaxy through nearly all of time? You build a new universe.


The real challenge for cosmology is figuring out exactly what happened to those first nascent galaxies. Our telescopes don’t let us watch them in time-lapse; we can’t fast forward our images of the young universe. Instead, cosmologists must craft mathematical narratives that explain why some of those galaxies flew apart from one another, while others merged and fell into the enormous clusters and filaments that we see around us today.


Even when cosmologists manage to cobble together a plausible such story, they find it difficult to check their work. If you can’t see a galaxy at every stage of its evolution, how do you make sure your story about it matches up with reality? How do you follow a galaxy through nearly all of time? Thanks to the astonishing computational power of supercomputers, a solution to this problem is beginning to emerge: You build a new universe.


In October, the world’s third fastest supercomputer, Mira, is scheduled to run the largest, most complex universe simulation ever attempted. The simulation will cram more than 12 billion years worth of cosmic evolution into just two weeks, tracking trillions of particles as they slowly coalesce into the web-like structure that defines our universe on a large scale.


Cosmic simulations have been around for decades, but the technology needed to run a trillion-particle simulation only recently became available. Thanks to Moore’s Law, that technology is getting better every year. If Moore’s Law holds, the supercomputers of the late 2010s will be a thousand times more powerful than Mira and her peers. That means computational cosmologists will be able to run more simulations at faster speeds and higher resolutions. The virtual universes they create will become the testing ground for our most sophisticated ideas about the cosmos.


Salman Habib is a senior physicist at the Argonne National Laboratory and the leader of the research team working with Mira to create simulations of the universe. Last week, I talked to Habib about cosmology, supercomputing, and what Mira might tell us about the enormous cosmic web we find ourselves in.


Help me get a handle on how your project is going to work. As I understand it, you’re going to create a computer simulation of the early universe just after the Big Bang, and in this simulation you will have trillions of virtual particles interacting with each other — and with the laws of physics — over a time period of more than 13 billion years. And once the simulation has run its course, you’ll be looking to see if what comes out at the end resembles what we see with our telescopes. Is that right?


Habib: That’s a good approximation of it. Our primary interest is large-scale structure formation throughout the universe and so we try to begin our simulations well after the Big Bang, and even well after the microwave background era. Let me explain why. We’re not sure how to simulate the very beginning of the universe because the physics are very complicated and partially unknown, and even if we could, the early universe is structurally homogenous relative to the complexity that we see now, so you don’t need a supercomputer to simulate it.


Later on, at the time of the microwave background radiation, we have a much better idea about what’s going on. WMAP and Planck have given us a really clear picture of what the universe looked like at that time, but even then the universe is still very homogenous — its density perturbations are something like one part in a hundred thousand. With that kind of homogeneity, you can still do the calculations and modeling without a supercomputer. But if you fast forward to the point where the universe is about a million times denser than it is now, that’s when things get so complicated that you want to hand over the calculations to a supercomputer.


Now the trillions of particles we’re talking about aren’t supposed to be actual physical particles like protons or neutrons or whatever. Because these trillions of particles are meant to represent the entire universe, they are extremely massive, something in the range of a billion suns. We know the gravitational mechanics of how these particles interact, and so we evolve them forward to see what kind of densities and structure they produce, both as a result of gravity and the expansion of the universe.


So, that’s essentially what the simulation does: It takes an initial condition and moves it forward to the present to see if our ideas about structure formation in the universe are correct.


At the largest scales, how would you describe the structure of the universe as we see it today through our telescopes? Some say it’s web-like or that it’s composed of sheets of filaments — are those accurate descriptions?


Habib: That’s a very accurate way to think about it. People often conceive of it as a cosmic web, a picture that dates back to the Soviet physicist Yakov Zel’dovich who had this very deep insight about how structure forms in the universe. The idea is that initially the universe is very smooth, very homogenous, with few perturbations.


If you looked at it, you wouldn’t see much. But then as the universe expands, gravity causes matter to attract and to form local structures. The first structures to form are sheets, and where the sheets intersect you get filaments, and where the filaments intersect you get clumps. As time progresses, you can start to see the basic structure where you have this enormous web of voids, filaments and clumps. The sheets are very thin, very ephemeral, so it is much harder to see them, but the rest of the structure is very sharp and clear, especially as seen by the Sloan Digital Sky Survey.



universe.png


Have previous simulations been successful in producing the structure we see with telescopes?


Habib: Oh yes, the web-like structure is completely borne out by simulations. Simulations date back a long way; one of the earliest — the one I consider to be the precursor to modern simulations — was done in the late 1960s by the Canadian-American cosmologist Jim Peebles. He spent a summer at Los Alamos and while he was there he was able to perform a 300-particle simulation, which is of course quite small compared to today’s simulations. People have been running larger and larger simulations since then, and when they do, they consistently see this same web-like structure.


Is there an aesthetic component to these simulations? Can you actually see galaxies forming?


Habib: There is definitely an aesthetic component. We’re looking at an actual image of the structure, but you can’t see galaxies forming. It’s not quite that granular, and besides these are gravity-only simulations. For large-scale structure simulations, gravity is all you need to understand how you get sheets and filaments and clumps. If you want to see how galaxies form, you need the rest of physics — you need individual atoms, angular momentum, gas physics, etc. These are enormously complicated processes and we don’t yet have the computing power to run them on the scale of the entire universe. There are people who do simulate galaxy formation with supercomputers, but they have to do it over much smaller volumes of the universe.


Some of the inflationary models for the early Universe suggest a process that would continue to produce additional universes, perhaps with their own laws of physics. Certainly that’s not something we could model with a computer now, but might it be someday?


Habib: It could be, but we’d have to understand the theory better. The theory you’re talking about, eternal inflation, has two issues. First, the sheer difficulty of the calculations, but second the theory itself is not well defined yet. I would argue that, at the moment, theories like eternal inflation are in the realm of speculative physics. There are models for eternal inflation — I’ve written papers about them, and so have a lot of other people — but if you go and look at the equations, they are not very well defined.


That’s because when you talk about producing new universes, you’re talking about the intersection between quantum mechanics and gravity, and we don’t yet have a satisfactory theory of quantum gravity. We have candidates for what might someday morph into an satisfactory theory, but we can’t say for sure. The multiverse idea is interesting and provocative, but it’s a work in progress.


What happens when you let the models run past the present? Time-wise, what’s the farthest that someone has taken one of these simulations?


Habib: That’s an interesting question. We usually just stop the simulations at the present, because we’re still trying to understand how we got here, but there’s no particular reason to stop them. You can continue to run them forward and some people have done that in the past. What they’ve found is that if you run the universe far enough into the future it expands into a pretty bleak place.


All the matter runs away from each other, because space is being created at an ever-accelerating rate. In fact, people often joke that this is the right time to do cosmology because trillions of years from now we won’t be able to see anything: Everything will have receded out of sight.


So yes, we can run these simulations into the future, but it’s not that interesting. The universe is much more interesting now than it’s going to be in the future, provided that this accelerating expansion phase of the universe continues as we expect it to.


Your project was made possible by the development of the Mira supercomputer, the third-fastest computer in the world. Can you describe what makes Mira so special?


Habib: Let me say one or two things about supercomputers. Every few years supercomputers become about 10 times more powerful, so with each new generation you get quite a leap in capabilities. Not only do supercomputers get faster, but they get much larger, which allows you to run much bigger problems. What distinguishes a supercomputer like Mira from a normal computer is that it has a very large number of computational units.


A simplified way to think about it is to imagine having a million laptops that you’ve networked in such a way that they’re able to communicate with each other very quickly. Now you split your problem up into a million chunks and you give each chunk to a laptop, and the laptop works on its chunk and passes the data around as needed, and eventually your problem gets solved.


What makes all of these simulations possible is the sheer size of the supercomputers. For example, the Mira has close to a petabyte of memory. If you tried to do a simulation like this on a normal computer, you wouldn’t be able to fit it, and even if you could fit it, if you tried to run it, it would never finish. With Mira, we’re able to complete these universe simulations in the span of a week or two.


I know that supercomputers like Mira are used for all kinds of scientific experiments outside of cosmology. What else will it be used for in the next few years?


Habib: There are a large number of applications. People use supercomputers to determine the properties of materials, to understand combustion, to figure out how a flame works. They’re also used to determine fluid dynamics; for instance you might want to know how air flows around the wing of an aircraft, and you can calculate that quite precisely with a supercomputer. In astrophysics there are all sorts of applications; people use supercomputers to study intergalactic gas, the formation of stars, supernovae and so on. 



argonne2.jpeg


Moore’s Law tells us that processing power increases exponentially. Assuming the next few years bring a huge leap in processing power, would you rather use it to perform these experiments quicker, or at a higher complexity?


Habib: There’s a difficulty that we’re running up against with Moore’s Law. If you want to get more performance out of these computers, you can do it two ways: You can make the computational units switch faster or you can add more computational units. It turns out that if you want to make the units switch faster, you need more power. We’ve reached a limit where we can, in principle, build a faster machine, but it would cost us many gigawatts of power to actually run it and we simply can’t afford to do that. So conventional Moore’s Law is already reaching a breaking point because of this power barrier.


Now if you want to solve this problem by reducing the amount of power used by the switches in the computer, then you have to reduce the voltage, but if you reduce the voltage you get more errors. So the next generation of computers — in five years or so — promises to be very different. We may have to program them in different ways, and we may have to think about how to power them differently, or how to correct for errors. It’s going to be interesting and in some senses it’s going to be more painful than it is now.


Now around 2018 or 2020, somewhere around that time scale, these machines are supposed to become a thousand times faster than they are right now. There are a lot of studies being done to figure out what you could do with a machine like that, but whether we’ll actually get there, I don’t know. It’s not yet clear that there will be investment in the technologies we need to get us there.


There is some hope that there will be investment, because supercomputer simulations are increasingly being used outside the basic sciences. Supercomputers are playing a big role in the development of new technologies. For instance, you can design a diesel engine without ever building a prototype simply by simulating it with a supercomputer.


It seems like a large, sped up version of one of these universe simulations would be perfect as a piece of public art. Has anyone tried anything like that?


Habib: That’s an interesting thought. The question is how you would actually show it, because it is a dynamic object. You could have it as a projection like you see at planetariums and that would be very beautiful, but really you have to see it in three dimensions. Until you see it in three dimensions you cannot appreciate how beautiful the structure is. What would be neat is a large-scale hologram — something where you could actually see the structure pop up around you. That would really be something to see.



This article originally published at The Atlantic
here


Read more: http://mashable.com/2012/09/25/ibm-mira-supercomputer/




Mira the Supercomputer Builds Universes

Apps and Software, IBM, space, supercomputer, tech, world

Saturday, December 26, 2015

Everything That Might Be True About the iPhone 5




Everything-that-might-be-true-about-the-iphone-5-940fb96d7d


Rumors of an upcoming iPhone 5 release have been running rampant in the blogosphere. Apple will reportedly debut the new iPhone, alongside the iPad mini and the new iPod nano, at a special event on Sept. 12, according to the blog iMore.


U.K.-based newspaper The Guardian also reported a release date of “mid-September.”


Further boosting buzz, Apple has previously referred to a mysterious “fall event.”


Recently, leaked photos of the alleged iPhone 5 popped up all over the Internet, tantalizing Apple fanboys. Check out the gallery below for the most complete pics yet, shot by Lab Factory, a repair shop that may have access to early prototypes of the new iPhone. Pics of components purported to be part of the phone, as well as a fully assembled case, have also surfaced online.


Apple’s last iPhone release was the iPhone 4S on Oct. 4, 2011.


Take a look at the video above for more details on the rumors.


Friday, December 25, 2015

Techie Volunteers Get New Yorkers Online After Sandy




Techie-volunteers-get-new-yorkers-online-after-sandy-c889481d88

The days of techies hiding in their basements or thinking only about stock options and foosball tables are long gone in New York City. Instead, they are organizing en masse to help small businesses, schools and nonprofit organizations get up and running after the devastation of Hurricane Sandy. And they are spreading beyond the Big Apple to offer assistance in Long Island, New Jersey, Upstate New York and Connecticut.


The efforts could also be the beginning of a regular commitment of technology pros to serve the New York community, as well as a model for the whole country, say organizers.


Much of the effort is coming from the New York Tech Meetup (NYTM), which has more than 28,000 members, including major tech entrepreneurs, investors and coders.


The campaign started taking volunteers the day after the storm (Tuesday, Oct. 30.) and had more than 350 by Friday morning. Most requests have been for getting organizations back online. But the meetup is also offering help with data recovery, backup power systems and temporary websites.




In addition, co-working centers, where freelancers or small companies rent office space, have volunteered to take people in. One of them, New Work City, is in the blackout zone. But the company’s co-founder, Tony Bacigalupo, secured a donated space at the Brooklyn Brainery, a continuing education school. There he has provided a space for about 15 people to do their own work and also to organize the volunteer effort.


Others can go to a Web site, called Sandy Coworking, featuring a “crowdsourced” map where people report places that provide free or paid office space, as well as power outlets and Internet access. People can also get help at a Hurricane Recovery web page or by texting a request to 646-392-7353.


Techies are envisioning ongoing programs long after the Hurricane Sandy aftermath. “We are…already starting to build the framework for NY Tech Corps that can be in place to support recovery in future disasters and emergencies, and do other ongoing volunteer work,” Jessica Lawrence, managing director of NYTM, told TechNewsDaily in an email.


That would be a continuation of efforts begun a decade ago after the 9/11 attacks. Back then, Andrew Rasiej, chairman of the NYTM and Founder of Personal Democracy Media, organized a similar effort. But he took it a step further, working with Senator Ron Wyden of Oregon on a bill creating a national technology corps called Netguard, the program made its way into the Homeland Security Act of 2002. But neither President Bush nor President Obama has made use of the program, said Rasiej.


While Internet access may seem like a minor concern next to flooding, lack of water and medical needs, Rasiej said that technology is key to fulfilling those needs. “The support mechanisms that are critical to keep those things running are technology based,” he said.


Other Ways to Help


Rasiej named other things that technology can do, such as creating a database of residents requesting help. Bacigalupo agreed. “Just making people aware of what’s going on has been a big help for folks,” he said.


In the near future, the technologists also plan to include relief projects in “hackathons,” which bring programmers together for a day or two with the challenge of building a new product, app or Web service. Several that were already scheduled, beginning next week, may now include challenges to create relief tools along the lines of that crowdsourced map of workspaces.


“In a hyper-connected world where the economy and our livelihoods are so reliant on technology, the need for emergency tech support should not be a fantasy,” said Andrew Rasiej. “It should be a fact of life.”



    This article originally published at TechNewsDaily
    here


    Read more: http://mashable.com/2012/11/02/tech-volunteers-sandy/




    Techie Volunteers Get New Yorkers Online After Sandy

    hurricane sandy, New York city, tech, U.S.

    Tuesday, December 15, 2015

    17 Smartphone Apps That Will Help You Win Your Twenties




    I got twentysomething problems but an app ain’t one.

    1. Waze


    itunes.apple.com



    giphy.com


     

    Waze is no ordinary navigation app. Like others, it reports real-time traffic information. But, based on reports from users, it also provides info on road debris, cops ticketing nearby, the cheapest gas in your area, and updates on your friends’ locations when they’re driving to the same destination.


    Available for iPhone, Android, and Windows Phone.


    2. Afterlight


    itunes.apple.com



    media.giphy.com


     

    2013 was the year of no one telling you how they got those cool white borders around their Instagram photos. Take control of your life today with this photo-editing app, and get new filter and lighting options to enhance your online presence.


    Available for iPhone.


    3. Group Xit


    play.google.com



    NBC


     

    One of the imminent frustrations of your twenties is being stuck in unwanted group texts with people who will not let the “brunch from three weeks ago” message die. Group Xit allows you to stealthily leave the group message or even just to mute anyone who is annoying you in particular, doing wonders for your sanity.


    Available for Android (iPhone users fear not — the next iOS update reportedly will include this feature anyway).


    4. Seamless


    itunes.apple.com



    NBC


     

    With Seamless, everywhere delivers. It has selections from 12,000-plus menus and operates in some cities that don’t have many alternative delivery options. You never have to leave your home again.


    Available for iPhone, iPad, Android, and Blackberry.


    5. Drizly


    itunes.apple.com



    ABC


     

    It’s just like Seamless…but for BOOZE. Drizly delivers beer, wine, and liquor right to your door in just 20–40 minutes. Great if you’re having a party and suddenly realize you’ve severely underestimated how much alcohol you need.


    Available for iPhone and Android.


    6. NYT Now


    itunes.apple.com



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    Written by New York Times editors, NYT Now sends you summaries of the top stories of the day. Never again look like an uniformed rube in front of your co-workers.


    Available for iPhone.


    7. Happy Hours


    iTunes.apple.com



    Paramount Pictures


     

    This app geolocates the nearest happy hour deals for you. There are lots of competing apps that serve the same function, but this one has a ton of different cities and an easy-to-use interface.


    Available for iPhone, Android, Windows Phone, and Blackberry.


    Correction: This post originally included another app recommendation, but readers pointed to the fact that it hasn’t been updated in 4 years and is now extremely slow.


    8. Private Photo Vault


    itunes.apple.com


    NBC


     

    Private Photo Vault does just one thing: It puts a passcode on photos you want to keep private. If you have nosy friends who are always doing a lot of swiping, this will help to keep them out of your biznass.


    Available for iPhone. Coming soon to Android.


    9. Scoutmob


    itunes.apple.com



    Universal Pictures


     

    Scoutmob is awesome because it not only sends information on deals in the area, but also has plenty of “app-only” deals that you have to be a Scoutmob user to redeem. Additionally, it provides a well-curated list of local events worth checking out and a delightful “stache-cam” photo tool with options like “Thom Sellique” and “Vested Barkeep.”


    Available for iPhone, Android, and Windows Phone.


    10. Dark Sky


    iTunes.apple.com



    Paramount Pictures


     

    While other weather apps tell you the percent chance that it will rain or snow, Dark Sky uses a weather radar (which you can see on a live map) to tell you the minute that precipitation will begin and exactly how long it will last. That means you can plot your early escape from work to avoid the coming storm or go ahead and leave your umbrella at home without fear.


    Available for iPhone.


    11. Venmo


    itunes.apple.com



    Fox


     

    Venmo allows you to pay and charge friends on your phone, so you don’t have to be the assholes who split the check six ways every time you go to a restaurant. It also happens to be great for stalking your contacts via their transactions, which show up (without amounts) on a feed in the app.


    Available for iPhone and Android.


    12. FitBit


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    FitBit is one of the best apps for monitoring “workouts and health” all day, able to track both your passive and active exercise, as well as calorie intake, sleep, and other health metrics.


    Available for iPhone and Windows Phone.


    13. Hotel Tonight


    itunes.apple.com



    Legendary Pictures


     

    Hotel Tonight provides you with information on the best values for unsold rooms at various hotels and allows you to book them last minute from your phone. Perfect for spontaneous trips.


    Available for iPhone, Android, and Windows Phone.


    14. Zombies, Run!


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    Zombies, Run! is an interactive combination of a virtual zombie apocalypse game and a fitness app that requires you to run at certain intervals in order to achieve goals and avoid being eaten by the undead. Amazing if you need motivation to go for a run and also want to feel like a kid again.


    Available for iPhone and Android.


    15. Mixology


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    Mixology is a handy source for a ton of mixed drink and cocktail recipes. But what’s really great about this app is the “Liquor Cabinet” tab, which allows you to input whatever options you have on hand and then see the (typically many) drink options you have. It’s really all about expanding your horizons.


    Available for iPhone and Android. Coming soon to Windows Phone.


    16. Will Call


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    Will Call is probably the most efficient means of getting concert tickets. They send you notifications when shows you may be interested in are coming up, and then let you purchase tickets with just two clicks. With their “Bar Tab” feature, you can even purchase drinks at participating venues without a card, just by saying your name at the bar.


    Available for iPhone and Android in NYC, L.A., and SF.


    17. Hinge


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    giphy.com


     

    So yes, you already have Tinder, but you probably use it primarily as a game of lightning speed “hot or not” while you’re procrastinating at work. Hinge beats Tinder for IRL dating by giving you just a small “batch” of possible matches every day (so you’ll actually look at their profiles) and because they have to be in your extended social network, which cuts way down on the amount of sorting through riff-raff.


    Available for iPhone and Android.


    Read more: http://buzzfeed.com/robfranklin/are-you-a-hannah-or-a-marnie




    17 Smartphone Apps That Will Help You Win Your Twenties

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