Showing posts with label work. Show all posts
Showing posts with label work. Show all posts

Wednesday, March 15, 2017

Google Voice How it work

Google Voice How it work



Google Voice (telephony service, free) Google Voice gives you a single number for all of your phones to use, e-mails you transcripts of your voicemail messages, and sports a host of sophisticated calling features. Set up conference calls for free, record calls, even switch phones in the middle of a call. And it’s all free.









Sign up Now


Google Voice is currently available by invite only. for sign up in the US. click here


Available link for download

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Thursday, March 2, 2017

HotSpot Shield Vpn Elite 4 2 5 Mod Apk Work 100

HotSpot Shield Vpn Elite 4 2 5 Mod Apk Work 100


Full HotSpot Shield is one important application for your android that users can browse the Internet safely. This one application will secure our internet connection by changing our original IP to other IP. By installing this you can also access sites that are blocked by your provider. Moreover, here we share HotSpot Shield Elite Full VPN Edition that has been on crack. So you can use this app for whatever you want without any annoying popup.



It is out there a lot of scattered HotSpot Shield Full apk shared, but most can not be used anymore. Sometimes we even just get a notification to immediately upgrade version of HotSpot Shield that we install it. But here we share HotSpot Shield Elite Edition VPN latest Full apk is still work to this post we made. What are you waiting, soon you download and install Full HotSpot Shield is now.

Here we share apk version already in the crack of HotSpot Shield Elite Edition VPN. So you just need to install it into your Android and youve got HotSpot Shield Elite VPN Premium Edition is free.

General Features
  • AutoShield: Detects unsecured Wi-Fi to automatically enable HTTPS protection, as well as it automatically unblocks content when you access Certain apps or sites. At other times, the VPN is kept off (currently, this feature is available for part of users only)
  • Full protection: encrypts traffic in and out from your device for ultimate privacy
  • Secure your Wi-Fi connections with banking-level HTTPS encryption; your Wi-Fi network can be vulnerable even if the device is secure
  • Prevent hackers from stealing your private information
  • Mask your IP address to browse the web privately & anonymously
  • Switch countries with ease; dedicated servers in US, UK and Japan
  • Unblock websites or apps such as Facebook, YouTube, BBC, Netflix and Hulu at work, school, while traveling or even through airplane Wi-Fi spots
  • Give unrestricted access to mobile VOIP and messaging services such as Skype and Viber around the world
  • Works like a proxy but with richer functionality

Hotspot Shield Elite Features
  • Private browsing
  • Unlimited bandwidth
  • virtual location
  • Use on multiple devices
  • Add free

Whats New?
  • Play Store Stable Version
  • Removed all ads libs from backend
  • Bug Fixes and improvements over v4.1.4

MOD Info
  • Dark and Light themes are available. (Official app have LIGHT theme)
  • Removed all types of ads completely.
  • "Elite" or "Premium" (pro) is activated by default without signing in. (Access to only US Virtual Location)
  • Added Material Design with gorgeous icon.
  • In-App updater of CRACK added for future updates.

How to Use?
  1. Uninstall any previous version and install the APK Use Provided
  2. Install it and start using. Enjoy!
===============================================

Download Link
Size: 8mb
Direct Link | MirrorCreator
===============================================
Source here


Available link for download

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Tuesday, January 31, 2017

How does a computers uninterruptible power supply UPS work

How does a computers uninterruptible power supply UPS work


A UPS generally protects a computer against four different power problems:
 
  • Voltage surges and spikes - Times when the voltage on the line is greater than it should be
  • Voltage sags - Times when the voltage on the line is less than it should be
  • Total power failure - Times when a line goes down or a fuse blows somewhere on the grid or in the building
  • Frequency differences - Times when the power is oscillating at something other than 60 Hertz  

 
 There are two common systems in use today: standby UPS and continuous UPS. A standby UPS runs the computer off of the normal utility power until it detects a problem. At that point, it very quickly (in five milliseconds or less) turns on a power inverter and runs the computer off of the UPSs battery (see How Batteries Work for more information). A power inverter simply turns the DC power delivered by the battery into 120-volt, 60-Hertz AC power.

     In a continuous UPS, the computer is always running off of battery power and the battery is continuously being recharged. You could fairly easily build a continuous UPS yourself with a largish battery charger, a battery and a power inverter. The battery charger continuously produces DC power, which the inverter continuously turns back into 120-volt AC power. If the power fails, the battery provides power to the inverter. There is no switch-over time in a continuous UPS. This setup provides a very stable source of power. 

     Standby UPS systems are far more common for home or small-business use because they tend to cost about half as much as a continuous system. Continuous systems provide extremely clean, stable power, so they tend to be used in server rooms and mission critical applications.






Available link for download

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Saturday, January 21, 2017

Hack Server Admin Billing Warnet Dengan BillHack 100 Work

Hack Server Admin Billing Warnet Dengan BillHack 100 Work


Hack Server Admin Billing Warnet Dengan BillHack | 100% Work




Software yang dipakai kali ini adalah Billhack yaitu software yang biasa dipakai mafia warnet untuk mencurangi billing warnet. Cara kerjanya adalah mengembalikan value time kita ke 0 lagi. artinya, meskipun kita sudah memakai fasilitas komputer selama 3 jam, dengan software ini akan kembali ke 0 lagi. Software Billhack dapat didownload  disini


Step penggunaan billhack :

  1. Download aplikasi Billhack terlebih dahulu
  2. Jalankan dengan double click (run as administrator untuk Windows 7 atau Windows 8
3. pilih single client dan akan tampil seperti ini..



4. buka run di start dan ketikan cmd. bila CMD di block dapat diakali dengan tips ini atau download CMD portable disini
5. setelah muncul ketikan net view maka akan terlihat komputer mana saja yang conect dengan komputer kita, dan cari nama komputer servernya biasanya pake nama SERVER, ADMIN
6. ketikan ping server tersebut contoh ping SERVER maka akan terlihat ip servernya.
7. setelah ketemu ip servernya masukan ip servernya di server ip/name seperti gambar diatas.
8. setelah itu masukan IP komputer tersebut dengan IP komputer Anda. dan isi billing username dengan nama di billing Anda.


9. setelah itu klik hack now.

Read more: http://nikmatnyaberbagiilmu.blogspot.com/2013/03/hack-server-admin-billing-warnet-dengan.html#ixzz2xc5H0is9


Available link for download

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Monday, December 19, 2016

How do I create a Marquee or writing work

How do I create a Marquee or writing work


the following script:

1. right to left
  " <marquee direction="left" scrollamount="2" align="center"> Posts Walk </ marquee> "


<marquee direction="left" scrollamount="2" align="center"> Posts Walk </ marquee>

2. left to right
  " <marquee direction="right" scrollamount="2" align="center"> Posts Walk </ marquee> "



<marquee direction="right" scrollamount="2" align="center"> Posts Walk </ marquee>

  3. back and forth
 
  "<marquee direction="left" scrollamount="2" align="center" behavior="alternate"> Posts Walk </ marquee>"




<marquee direction="left" scrollamount="2" align="center" behavior="alternate"> Posts Walk </ marquee>

 4. top to bottom
" <marquee direction="down" scrollamount="2" align="center"> Posts Walk </ marquee> "



<marquee direction="down" scrollamount="2" align="center"> Posts Walk </ marquee>

easy not ...


Available link for download

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Thursday, November 17, 2016

How does electronic paper work

How does electronic paper work


The Skinny On Electronic Paper

As the holiday season approaches, you may be starting to consider gifts for family or friends. A good choice this year might be a product that incorporates the clever technology called “electronic paper,” known best for its use in Amazon’s Kindle, one of several electronic book readers that have recently become popular. Introduced in the U.S. in 2007 and worldwide, the Kindle is lighter than a typical paperback novel, but it can store 1,500 books, newspapers, or magazines at once. Its screen displays pages one at a time, and pages can be “turned” with the click of a button. Importantly, devices with electronic paper screens have much longer battery lives than those with conventional screens, and electronic paper can be viewed in bright sunlight without glare and from almost any angle, just like normal paper and unlike other types of screens. These amazing properties are fueling the development and adoptance of the technology, and they are a result of the science underlying it.

How does electronic paper work?

The basis of most electronic paper is a substance called “electronic ink” developed at M.I.T. about 12 years ago by scientists Barrett Comiskey, J. D. Albert, Hidekazu Yoshizawa, and Joseph Jacobson, now made by a company called E-Ink based in Cambridge, Massachusetts. The ink is electrophoretic, meaning that it contains charged particles that can be moved around by electricity. These are microparticles made of polyethylene and either titanium dioxide, which is white, or an inorganic black pigment. Each microparticle is about 5 microns (millionths of a meter) in diameter, the size of the nucleus of a human cell. The white ones are negatively charged, while the black ones are positively charged. They are suspended in a liquid and “printed” onto a transparent, conductive film to make paper-thin sheets called “Vizplex.” A sheet of Vizplex with the particles facing down forms the top of an electronic paper display. A layer of conductive material is then added to form the base of the display. When a pattern of electric current is applied between the top and bottom display layers, these become negatively- and positively-charged in particular regions. Then, the black and white microparticles move towards the negative and positive regions, respectively, and an image is formed by the particles at the top of the display.

Notably, the microparticles in electronic ink are grouped by the hundreds into small capsules about 40 microns across (approximately the width of a human hair). The capsules are made of a strong, clear material containing urea and formaldehyde. Within each capsule, black and white particles are prevented from binding to each other by individual coatings of a polymer that provides strong inter-particle repulsive forces. The use of discrete capsules makes electronic ink printable, allowing for its mass production and thereby helping to gradually reduce the costs associated with this technology. Also, the properties of the capsules are such that the microparticles remain in their last configuration at the top or bottom once an electric field is no longer present.

What makes electronic paper better for reading than other types of displays?

The most common type of screen found in televisions, cell phones, and other electronic devices today is liquid-crystal display (LCD). An LCD screen is composed of molecules called liquid crystals that must usually be illuminated by a hidden light source, either fluorescent tubes or light-emitting diodes (LEDs), to be seen. Because of this backlighting, LCD screens cannot be viewed in bright light, such as that encountered outdoors on a sunny day, electricity must be constantly consumed to power them, and they cannot be viewed well from many angles. Other types of displays, such as cathode-ray tube (CRT) monitors and plasma screens, which emit light themselves, have the same shortcomings. In electronic paper, the pigmented microparticles in electronic ink reflect ambient light just like pen on paper, so the images they form can be observed in dim or bright light, without use of electricity (which is only needed to change the displayed images), and from almost any angle.

More than 5 million electronic book readers are expected to be sold this year, and these may be used for more than just recreational reading. A few schools have begun providing textbooks to children in electronic form so that they do not have to lug so much to school, and one school has replaced its library with 18 Kindles. Electronic ink may become common in cell phones: it is already used in the screen of the Motorola F3 and in the keypad of the Samsung Alias 2. Clocks, watches, and USB memory sticks with electronic paper displays are beginning to appear on the market, and electronic ink (coupled with wireless internet capabilities) may soon be used in household appliances to automatically show the latest headlines, weather, or other data. Similarly, electronic paper may soon be used to make schedules for posting at bus stops, community bulletin boards, and price labels for the shelves of supermarkets that may be changed remotely.

The future of electronic paper.

Sheets of electronic ink can be made flexible by enclosing them in thin, durable plastic rather than in glass, as is customary in today’s electronic paper products. Electronic book readers with screens that roll up when not in use are expected to be available soon. Flexible electronic ink is likely to also appear on credit cards (where it could display travel information using electricity obtained when cards are swiped), in ads on the curved surfaces of subway trains, and eventually even on clothing. Electronic paper featuring color is also being developed. This may employ tinted filters incorporated into electronic ink displays or a novel form of LCD screen with properties similar to those of electronic ink. Digital photo frames may one day utilize such technology. Finally, image refresh rates of electronic paper are currently too low to support video, but refinements with that goal in mind are in the works. For now, the major benefits of electronic paper, its low power consumption and readability in all lighting, will continue to attract and intrigue consumers, encourage more scientific research, and maybe even save a tree or two.


Available link for download

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Wednesday, October 12, 2016

How Hard Disks Work

How Hard Disks Work



   Nearly every desktop computer and server in use today contains one or more hard-disk drives. Every mainframe and supercomputer is normally connected to hundreds of them. You can even find VCR-type devices and camcorders that use hard disks instead of tape. These billions of hard disks do one thing well -- they store changing digital information in a relatively permanent form. They give computers the ability to remember things when the power goes out. 

In this article, well take apart a hard disk so that you can see whats inside, and also discuss how they organize the gigabytes of information they hold in files!














 

Hard Disk Basics

Hard disks were invented in the 1950s. They started as large disks up to 20 inches in diameter holding just a few megabytes. They were originally called "fixed disks" or "Winchesters" (a code name used for a popular IBM product). They later became known as "hard disks" to distinguish them from "floppy disks." Hard disks have a hard platter that holds the magnetic medium, as opposed to the flexible plastic film found in tapes and floppies. 

At the simplest level, a hard disk is not that different from a cassette tape. Both hard disks and cassette tapes use the same magnetic recording techniques described in How Tape Recorders Work. Hard disks and cassette tapes also share the major benefits of magnetic storage -- the magnetic medium can be easily erased and rewritten, and it will "remember" the magnetic flux patterns stored onto the medium for many years. 

Cassette Tape vs. Hard Disk

Lets look at the big differences between cassette tapes and hard disks:
  • The magnetic recording material on a cassette tape is coated onto a thin plastic strip. In a hard disk, the magnetic recording material is layered onto a high-precision aluminum or glass disk. The hard-disk platter is then polished to mirror-type smoothness.
  • With a tape, you have to fast-forward or reverse to get to any particular point on the tape. This can take several minutes with a long tape. On a hard disk, you can move to any point on the surface of the disk almost instantly.
  • In a cassette-tape deck, the read/write head touches the tape directly. In a hard disk, the read/write head "flies" over the disk, never actually touching it.
  • The tape in a cassette-tape deck moves over the head at about 2 inches (about 5.08 cm) per second. A hard-disk platter can spin underneath its head at speeds up to 3,000 inches per second (about 170 mph or 272 kph)!
  • The information on a hard disk is stored in extremely small magnetic domains compared to a cassette tapes. The size of these domains is made possible by the precision of the platter and the speed of the medium.
­ Because of these differences, a modern hard disk is able to store an amazing amount of information in a small space. A hard disk can also access any of its information in a fraction of a second. 

Capacity and Performance

A typical desktop machine will have a hard disk with a capacity of between 10 and 40 gigabytes. Data is stored onto the disk in the form of files. A file is simply a named collection of bytes. The bytes might be the ASCII codes for the characters of a text file, or they could be the instructions of a software application for the computer to execute, or they could be the records of a data base, or they could be the pixel colors for a GIF image. No matter what it contains, however, a file is simply a string of bytes. When a program running on the computer requests a file, the hard disk retrieves its bytes and sends them to the CPU one at a time.
There are two ways to measure the performance of a hard disk:
  • Data rate - The data rate is the number of bytes per second that the drive can deliver to the CPU. Rates between 5 and 40 megabytes per second are common.
  • Seek time - The seek time is the amount of time between when the CPU requests a file and when the first byte of the file is sent to the CPU. Times between 10 and 20 milliseconds are common.
The other important parameter is the capacity of the drive, which is the number of bytes it can hold. 

Inside: Electronics Board

The best way to understand how a hard disk works is to take a look inside. (Note that OPENING A HARD DISK RUINS IT, so this is not something to try at home unless you have a defunct drive.)
Here is a typical hard-disk drive:





­It is a sealed aluminum box with controller electronics attached to one side. The electronics control the read/write mechanism and the motor that spins the platters. The electronics also assemble the magnetic domains on the drive into bytes (reading) and turn bytes into magnetic domains (writing). The electronics are all contained on a small board that detaches from the rest of the drive:



Inside: Beneath the Board

Underneath the board are the connections for the motor that spins the platters, as well as a highly-filtered vent hole that lets internal and external air pressures equalize:





Removing the cover from the drive reveals an extremely simple but very precise interior:



In this picture you can see:

  • The platters - These typically spin at 3,600 or 7,200 rpm when the drive is operating. These platters are manufactured to amazing tolerances and are mirror-smooth (as you can see in this interesting self-portrait of the author... no easy way to avoid that!).
  • The arm - This holds the read/write heads and is controlled by the mechanism in the upper-left corner. The arm is able to move the heads from the hub to the edge of the drive. The arm and its movement mechanism are extremely light and fast. The arm on a typical hard-disk drive can move from hub to edge and back up to 50 times per second -- it is an amazing thing to watch!

Inside: Platters and Heads

In order to increase the amount of information the drive can store, most hard disks have multiple platters. This drive has three platters and six read/write heads:





The mechanism that moves the arms on a hard disk has to be incredibly fast and precise. It can be constructed using a high-speed linear motor.




Many drives use a "voice coil" approach -- the same technique used to move the cone of a speaker on your stereo is used to move the arm. 


Storing the Data

Data is stored on the surface of a platter in sectors and tracks. Tracks are concentric circles, and sectors are pie-shaped wedges on a track, like this:



A typical track is shown in yellow; a typical sector is shown in blue. A sector contains a fixed number of bytes -- for example, 256 or 512. Either at the drive or the operating system level, sectors are often grouped together into clusters.

The process of low-level formatting a drive establishes the tracks and sectors on the platter. The starting and ending points of each sector are written onto the platter. This process prepares the drive to hold blocks of bytes. High-level formatting then writes the file-storage structures, like the file-allocation table, into the sectors. This process prepares the drive to hold files.



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