DNA, 6 August 2014 - 8:51am IST | Place: Kolkata | 
student suicide in india

A 22 year old engineering student of Jadavpur university commited suicide in his hostel room after writing an online recuritment test for Microsoft as a part of the college' placement procedure. This was the second big placement in the campus, with a prospective salary of Rs 17 lakh, after he could not clear the final round of placement for Amazon.
The Telegraph reported, that Manish Ranjan belonged to the Siwan district of Bihar, and was a very good student. His friend had cleared the Amazon placements. Manish, ironically cleared the entrance exam of Microsoft, news that came too late for him.
He hung himself from the fan in his hostel room, but did not leave a suicide note.Though the job scenario and the pressure of placement could be the trigger but not the main cause for the suicide.

So they went up to the Mock Turtle, who looked at them with large eyes full of tears, but said nothing.

'This here young lady,' said the Gryphon, 'she wants for to know your history, she do.'

'I'll tell it her,' said the Mock Turtle in a deep, hollow tone: 'sit down, both of you, and don't speak a word till I've finished.'

So they sat down, and nobody spoke for some minutes. Alice thought to herself, 'I don't see how he can EVEN finish, if he doesn't begin.' But she waited patiently.

'Once,' said the Mock Turtle at last, with a deep sigh, 'I was a real Turtle.'

These words were followed by a very long silence, broken only by an occasional exclamation of 'Hjckrrh!' from the Gryphon, and the constant heavy sobbing of the Mock Turtle. Alice was very nearly getting up and saying, 'Thank you, sir, for your interesting story,' but she could not help thinking there MUST be more to come, so she sat still and said nothing.

'When we were little,' the Mock Turtle went on at last, more calmly, though still sobbing a little now and then, 'we went to school in the sea. The master was an old Turtle—we used to call him Tortoise—'

This is what a map should look like inside of a sci-fi film's futuristic war room. For the installation "Polyscape,"artist Shunsaku

  Ishinabe projects a map onto a grid of tiles and then has those tiles flex up and down based on the landscape's actual height and depth with flashy effects. When it's displaying a mountain, the map raises to a point, and when it's displaying a depression, the map sinks. Ishinabe published a video demonstrating a prototype of "Polyscape," last year, 
via-Theverge

Immediately after we resumed the march, and though I realized that in some way I had offended Dian the Beautiful I could not prevail upon her to talk with me that I might learn wherein I had erred—in fact I might quite as well have been addressing a sphinx for all the attention I got. At last my own foolish pride stepped in and prevented my making any further attempts, and thus a companionship that without my realizing it had come to mean a great deal to me was cut off. Thereafter I confined my conversation to Perry. Hooja did not renew his advances toward the girl, nor did he again venture near me.

Again the weary and apparently interminable marching became a perfect nightmare of horrors to me. The more firmly fixed became the realization that the girl's friendship had meant so much to me, the more I came to miss it; and the more impregnable the barrier of silly pride. But I was very young and would not ask Ghak for the explanation which I was sure he could give, and that might have made everything all right again.

On the march, or during halts, Dian refused consistently to notice me—when her eyes wandered in my direction she looked either over my head or directly through me. At last I became desperate, and determined to swallow my self-esteem, and again beg her to tell me how I had offended, and how I might make reparation. I made up my mind that I should do this at the next halt. We were approaching another range of mountains at the time, and when we reached them, instead of winding across them through some high-flung pass we entered a mighty natural tunnel—a series of labyrinthine grottoes, dark as Erebus.

The guards had no torches or light of any description. In fact we had seen no artificial light or sign of fire since we had entered Pellucidar. In a land of perpetual noon there is no need of light above ground, yet I marveled that they had no means of lighting their way through these dark, subterranean passages. So we crept along at a snail's pace, with much stumbling and falling—the guards keeping up a singsong chant ahead of us, interspersed with certain high notes which I found always indicated rough places and turns.

Project Ara
 Project Ara is not, technically, a phone. It's not even that accurate to call it a project. It's more like a mission. The end goal for ATAP is to hand off a viable product and stewardship of a hardware eco system. Google is working with open-source development organization Linaro to develop a special edition of Android for the Project Ara customizable smartphone.
Project Ara

Google’s yet unreleased Project Ara is a build-your-own smartphone that allows users to mix and match features. The $50 configurable smartphone will come 
with an empty phone frame and screen, and users can snap on or take out modular parts from the rear of the handset to add or remove features.
The smartphone, which will ship early next year, has already sparked the development of Lego-like modules that can be attached. Google has talked 
about detachable antenna and camera modules, but developers are also considering modules for wireless  networking, gaming, storage and thermometers.
Paul Eremenko, head of Project Ara
Google already offers a module developers kit (MDK) for Project Ara platform through which developers can take advantage of the UniPro hardware and protocol stack.
Grey couldn’t share any more information on release dates for the OS, citing a confidentiality agreement with Google. He did not say whether the version of Android would
be based on the latest L release, which supports 64-bit ARM processors. Linaro is working on Android with  Google’s Advanced Technology and Projects (ATAP) unit, which is leading the development of Project Ara.

However, more details about the Android edition may be shared at the second Project Ara developer conference scheduled for the end of November, which is when Google
also plans to release an updated version of the MDK.
Google’s Project Ara modular smartphone will take the smartphone universe by storm next

Why Project Ara Sounds Awesome
  Google’s Project Ara modular smartphone has always been an interesting idea for the future of smartphones, although it
never really seemed like a commercial product would be available anytime soon. However, Google’s ATAP division is moving quite fast and the first module developers will soonbe able to devise their own modular smartphone concepts. In anticipation of the first Project Ara developers conference that takes place next week  Google has  released the MDK – short for Module Developer Kit – that describes the project in great detail.
year and developers have already been given a glimpse at what such devices will have to offer. Module makers will be able to build a variety of smartphone components for Project Ara phones, with a new concept showing what a modular smartphone may bring to mobile
gaming. Imagined by The Aether Technician, Flippypad is a game controller concept that snaps into one of the Project Ara’s modules on the back to offer gamers a better way to interact with their mobile games.

In other words, Project Ara seems to be more real than ever. The available documentation goes into great detail, describing what devs have to know about Project Ara in order to create their own smart blocks.
Google also shows the various potential designs of Project Ara, both when it comes to size, but also to module placement. A recent video has also shared more details about what future Project Ara configurations will have to offer, as it was likely looking at a page of the MDK. What’s not immediately clear is how developers will actually build these modules and make them available to consumers.
The MDK can be downloaded by anyone interested in potentially developing modules for Ara, and the documentation should further be updated in the future. “This is a very early version but our goals are to give the developer community an opportunity to provide feedback and input, and to help us ensure that the final MDK – anticipated at the end of 2014 – is elegant, flexible, and complete,  Google       ATAP’s Paul Eremenko, head of Project Ara, wrote on Google+.
Google’s Project Ara modular smartphone is more than just a dream for a distant future, as the company plans to show off its first working prototype in the near future. In fact,  Google  plans to start selling a commercial version of the device as soon as next year, Time reports. As it promised in a new Project Ara video, Google revealed that the first Ara developer conference will take place during April 15-16 at Silicon Valley’s Computer History Museum. “A year or so from now, it hopes o have a product on the market,” the publication says.
Despite likely being a costly research project, Project Ara won’t be an expensive smartphone. In fact, the most basic Project Ara device will apparently retail for $50. For that price, the device will have just Wi-Fi connectivity, with users expected to further expand its capabilities with future module purchases. That way, users won’t have to settle for cheap smartphones that can’t be improved and instead opt for an Ara starter kit that can evolve in time, and which could be turned into a high-end device as more modules are added.The central piece of the device will consist of the endoskeleton that’s going to be Google-branded and come in three sizes, for mini handsets, “mainstream” devices and even phablets. The bigger the endoskeleton, the more modules it’ll be able to house, with the medium version having space for 10 modules.

Google plans to offer buyers complete freedom when customizing their devices, departing from the design of current smartphones. “Though basic technical issues are sometimes a factor — an antenna can’t just go anywhere on a phone’s body, for instance — the general idea is to design the phone so that you can swap modules in and out at will,” the publication writes. “If you never take photos with your phone but worry about running out of power, for instance, you might choose to do without a camera module, freeing up room for a second battery.”
The modules will be hot swappable, meaning that users will be able to change them without powering off the device – that’s assuming the battery module isn’t removed.
“Another part of the phone-picking process could involve suggestions based on an automated examination of your Facebook or Google+ activity. If your updates show that you’re a frequent traveler, for example, you might be advised to go for a big battery and a wireless carrier with service in the destinations you frequent. Someone whose photos get lots of positive feedback from friends could be pointed towards a serious camera module; if those photos tend to be taken at dusk, it might be a camera with good low-light performance.”

VIA- TIME, MOTOROLA
SOURCE: theverge,. bgr , 

Hither, and thither, on high, glided the snow-white wings of small, unspeckled birds; these were the gentle thoughts of the feminine air; but to and fro in the deeps, far down in the bottomless blue, rushed mighty leviathans, sword-fish, and sharks; and these were the strong, troubled, murderous thinkings of the masculine sea.

But though thus contrasting within, the contrast was only in shades and shadows without; those two seemed one; it was only the sex, as it were, that distinguished them.

Aloft, like a royal czar and king, the sun seemed giving this gentle air to this bold and rolling sea; even as bride to groom. And at the girdling line of the horizon, a soft and tremulous motion—most seen here at the Equator—denoted the fond, throbbing trust, the loving alarms, with which the poor bride gave her bosom away.

Tied up and twisted; gnarled and knotted with wrinkles; haggardly firm and unyielding; his eyes glowing like coals, that still glow in the ashes of ruin; untottering Ahab stood forth in the clearness of the morn; lifting his splintered helmet of a brow to the fair girl's forehead of heaven.

Oh, immortal infancy, and innocency of the azure! Invisible winged creatures that frolic all round us! Sweet childhood of air and sky! how oblivious were ye of old Ahab's close-coiled woe! But so have I seen little Miriam and Martha, laughing-eyed elves, heedlessly gambol around their old sire; sporting with the circle of singed locks which grew on the marge of that burnt-out crater of his brain.

Slowly crossing the deck from the scuttle, Ahab leaned over the side and watched how his shadow in the water sank and sank to his gaze, the more and the more that he strove to pierce the profundity. But the lovely aromas in that enchanted air did at last seem to dispel, for a moment, the cankerous thing in his soul. That glad, happy air, that winsome sky, did at last stroke and caress him; the step-mother world, so long cruel—forbidding—now threw affectionate arms round his stubborn neck, and did seem to joyously sob over him, as if over one, that however wilful and erring, she could yet find it in her heart to save and to bless. From beneath his slouched hat Ahab dropped a tear into the sea; nor did all the Pacific contain such wealth as that one wee drop.

Starbuck saw the old man; saw him, how he heavily leaned over the side; and he seemed to hear in his own true heart the measureless sobbing that stole out of the centre of the serenity around. Careful not to touch him, or be noticed by him, he yet drew near to him, and stood there.

 “Space debris is a big problem for satellite operations: it poses serious risks to a wide array of satellites critical to society there is more concern and awareness of space-junk issues, and more recognition that atmospheric drag is the major uncertainty in tracking it.” Rockets used to launch spacecraft, and spacecraft that decay or collide while in orbit create space debris that is difficult to remove. Tiny fragments of these spacecraft can puncture satellites and other orbiting assets.

SPACE DEBRIS AHEAD
More than 500,000 pieces of debris, or “space junk,” are tracked as they orbit the Earth. They all travel at speeds up to 17,500 Humans produce an incredible amount of trash on Earth. In the United States alone, the average person throws away more than 4 pounds of trash every day. The country as a whole produces 251 million tons of garbage in one year [source: EPA].Because we have our own issues on the ground with littering and overflowing landfills, we might not think too much about space junk aside from a few space stations and a handful of satellites in orbit. But NASA claims there are potentially millions of objects, both small and large, orbiting Earth in a giant cloud of junk. Barring anti-satellite (ASAT) tests, leftover spacecraft that were never deorbited pose the biggest threat as they, and their orbits, decay over time. Russia has a high number of dead satellites still in orbit around the planet that could collide with other satellites, creating an innumerable spike in debris levels. Today, the majority of space debris in orbit was created from two events: the Iridium33 and Kosmos 2251 satellite collision in 2009 and a Chinese ASAT test in 2007. Based on current trends, the risk of future collisions still persists.
NASA and five other members of the Interagency Space Debris Coordination Committee (IADC) produced six different models of future space debris. Liou said the debris population at the 1-cm level is approximately 500,000 while, if you go down to the 1-mm level, the number is estimated to be a staggering 100 million. The models all predicted that, as is, the debris situation is set to get worse.
“The results from those six models, they are consistent with each other, meaning even with no future explosions and the global 90 percent compliance of the post-mission disposal measures — including the 25-year rule — the debris population in [Low Earth Orbit] (LEO) is expected to increase in the next 200 yearsThe Defense Advanced Research Projects Agency (DARPA) is testing a “cellular” satellite design where small “satlets” can form together to comprise a satellite. David Barnhart, program manager for DARPA Phoenix said the idea,
 The Dangers of Space Junk
Although it's hard to believe, many of these objects travel around the Earth at speeds more than 22,000 miles an hour. Anything traveling at a velocity this high would cause a considerable amount of damage to a spacecraft if a direct hit occurred. Even a tiny fleck of paint traveling at such a speed is capable of boring a quarter-inch hole into the window of a space station.
Because there are so many objects flying around up there, there's concern that collisions between debris will only produce more fragments. Even if we stopped launching spacecraft right now and didn't send a single object into orbit, the amount of debris in space would remain constant until 2055
The good news
most space junk is located between 550 and 625 miles above the Earth -- the International Space Station flies in orbit at 250 miles high, while space shuttles usually only reach 375 miles above Earth. Space programs are also working on rocket designs that limit the amount of debris created during a launch.
For those of us on Earth, is there a possibility space junk could fall back to the ground? Everything in orbit will eventually be pulled back down by Earth's gravity -- when that happens depends on how high the object is and how fast it's going. The higher the altitude, the longer the object will take to fall, and it'll take even longer the faster it's speeding around the Earth. These objects could stay in orbit for thousands of years. And the risks of getting hit on the head? Fortunately, most debris burns up during reentry, and no one has ever been killed by space debris.add your comments below,,,


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