April 2, 2013



Nearly 13 years ago, the wizardly band of engineers who invented and continue to defend the Internet published a prescient document they called BCP38, which described ways to thwart the most common forms of distributed denial-of-service attack.
BCP38, short for Best Current Practice #38, was published soon after debilitating denial of service attacks crippled eBay, Amazon, Yahoo, and other major sites in February 2000. If those guidelines to stop malcontents from forging Internet addresses had been widely adopted by the companies, universities, and government agencies that operate the modern Internet, this week's electronic onslaught targeting Spamhaus would have been prevented.
But they weren't. So a 300-gigabit-per-second torrent of traffic flooded into the networks of companies including Spamhaus, Cloudflare, and key Internet switching stations in Amsterdam, Frankfurt, and London. It was like 1,000 cars trying to crowd onto a highway designed for 100 vehicles at a time. Cloudflare dubbed it, perhaps a bit too dramatically, the attack "that almost broke the Internet."
BCP38 outlined how providers can detect and then ignore the kind of forged Internet addresses that were used in this week's DDoS attack. Since its publication, though, adoption has been haphazard. Hardware generally needs to be upgraded. Employees and customers need to be trained. Routers definitely need to be reconfigured. The cost for most providers, in other words, has exceeded the benefits.
"There's an asymmetric cost-benefit here," said Paul Vixie, an engineer and Internet pioneer who serves on the Internet Corporation for Assigned Names and Numbers' security advisory board. That's because, Vixie said, the provider that takes the time to secure its networks makes all the investment, while other providers "get all the reward."
BCP38 is designed to verify that someone claiming to be located in a certain corner of the Internet actually is there. It's a little like a rule that the Postal Service might impose if there's a deluge of junk mail with fake return addresses originating from a particular ZIP code. If you're sending a letter from San Francisco, the new rule might say, your return label needs to sport a valid northern California address, not one falsely purporting to originate in Hong Kong or Paris. It might annoy the occasional tourist, but it would probably work in most cases.
This week's anti-Spamhaus onslaught relied on attackers spoofing Internet addresses, then exploiting a feature of the domain name system (DNS) called open recursors or open recursive resolvers. Because of a quirk in the design of one of the Internet's workhorse protocols, these can amplify traffic over 30 times and overwhelm all but the best-defended targets.
The countermeasures
Preventing spoofing through BCP38 will prevent this type of amplification attack. "There is no way to exploit DNS servers of any type, including open recursors, to attack any third party without the ability to spoof traffic," said Arbor Networks' Roland Dobbins. "The ability to spoof traffic is what makes the attack possible. Take away the ability to spoof traffic, and DNS servers may no longer be abused to send floods of traffic to DDoS third parties."
Other countermeasures exist. One of them is to lock down open recursive resolvers by allowing them to be used only by authorized users. There are about 27 million DNS resolvers on the global Internet. Of those, a full 25 million "pose a significant threat" and need to be reconfigured, according to a survey conducted by the Open Resolver Project. Reprogramming them all is the very definition of a non-trivial task.
"You could stop this attack in either of two ways," said Matthew Prince, co-founder and CEO of CloudFlare, which helped defend against this week's attack. "One, shut down the open resolvers, or two, get all the networks to implement BCP38. The attackers need both in order to generate this volume of attack traffic."

Alternatively, networks don't need to lock down open resolvers completely. Google, which operates one of the world's largest networks, has adopted an innovative rate-limiting technique. It describes rate-limiting as a way to "protect any other systems against amplification and traditional distributed DoS (botnet) attacks that could be launched from our resolver servers."
But few companies, universities, individuals, and assorted network operators are going to be as security-conscious as Mountain View's teams of very savvy engineers. Worse yet, even if open recursive resolvers are closed to the public, attackers can switch to other services that rely on UDP, the Internet's User Datagram Protocol. Network management protocols and time-synchronization protocols -- all designed for a simpler, more innocent era -- can also be pressed into service as destructive traffic reflectors.
The reflection ratios may not be as high as 1:30, but they're still enough to interest someone with malicious intent. Arbor Networks has spotted attacks based on traffic amplification from SNMP, a network management protocol, that exceed 30 gigabits per second. Closing open DNS resolvers won't affect attacks that use SNMP to club unwitting targets.
Which is, perhaps, the best argument for BCP38. The most common way to curb spoofing under BCP38 is with a technique called Unicast Reverse Path Forwarding (uRPF) to try to weed out unwanted traffic. But that needs to be extended to nearly every customer of a provider or network operator, a daunting undertaking.
Nick Hilliard, chief technology officer for INEX, an Internet exchange based in Dublin, Ireland, said:
BCP38 is harder than it looks because in order to implement it properly, you need to roll out uRPF or interface [access control lists] to every single customer edge point on the internet. I.e. every DSL link, every cable modem, every VPS in a provider's cloud hosting centre and so forth. The scale of this undertaking is huge: there is lots of older (and sometimes new) equipment in production out there which either doesn't support uRPF (in which case you can usually write access filters to compensate), or which supports uRPF but badly (i.e. the kit might support it for IPv4 but not IPv6). If you're a network operator and you can't use uRPF because your kit won't support it, installing and maintaining individual access filtering on your customer edge is impossible without good automated tools to do so, and many service providers don't have these.
Translation: It all adds up to being really hard.
Vixie, who wrote an easy-to-read description of the problem back in 2002, suggested it's a little like fire, building, and safety codes: the government "usually takes a role" forcing everyone to adopt the same standards, and roughly the same costs. Eventually, he suggests, nobody complains that their competitors are getting away without paying compliance costs.
That argument crops up frequently enough in technical circles, but it tends to be shot down just as fast. For one thing, wielding a botnet to carry out a DDoS attack is already illegal in the United States and just about everywhere else in the civilized world. And as a practical matter, botnet-managing criminals can change their tactics faster than a phalanx of professional bureaucrats in Washington, D.C. or other national capitals can respond.
INEX's Hilliard said the real answer is to change the economics to make it less profitable to carry out DDoS attacks.
When sending spam was cheap, Hilliard said, he was receiving 10,000 Viagra offers a month. But after network providers took concerted steps to crack down, "the economics changed and so did the people who were abusing the Internet, and now I get about 2,000 a month, all of which end up in my spam folder," he said. "The same thing will happen to DDoS attacks: in 10 years' time, we will have a lot more in terms of BCP38 coverage, and we won't get upset as much about the small but steady stream of 300-gigabit attacks."

Posted on Tuesday, April 02, 2013 by Unknown

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Undersea cable accused
Three men arrested off Alexandria accused of trying to cut an undersea cable called Sea-WE-Me-4
Egyptian naval forces have arrested three scuba divers who they say were trying to cut an undersea cable off the port of Alexandria that provides one-third of all internet capacity between Europe and Egypt.
However the navy who captured the men had no explanation of who they were working for, where they came from or why they would want to disrupt Egypt's internet communications.
Pictures on the Egyptian coastguard's Facebook page showed the three men tied up on board a boat, and alleged they were cutting an undersea cable partly owned by Telecom Egypt, the country's main communications organisation. The men had been on a fishing boat, said a statement by Colonel Ahmed Mohammed Ali, but offered no other details.
The world internet submarine cable map by the telecoms analysis company Telegeography shows that six cables come aground at Alexandria. The men were allegedly trying to cut the SeaWeMe-4 (South-east Asia-Middle East-Western Europe-4) cable, able to carry a third of the traffic between Europe and Egypt. Covering a distance of 20,000km, it enters the sea at Marseilles and makes landfall in Annaba in 15 other countries including Sri Lanka, Thailand and India.
Egypt undersea cable map  
Map showing the location of Sea-We-Me-4 cable. Source: Telegeography 
 
  It is one of eight undersea cables between Europe and Egypt - so cutting one would not immediately destroy connectivity, but would lead to congestion and slowdowns.
However reports earlier this week suggested cable breaks on four cables around Egypt - IMEWE (linking France to India via Alexandria and Suez), TE-North (owned by Telecom Egypt), EIG (Europe India Gateway), and SEA-ME-WE-3, a partner to the cable that was allegedly attacked. That would cause significant interruptions to internet services.
Internet services in Egypt have been suffering disruption since 22 March, apparently after a ship's anchor cut through another cable.
Worldwide, undersea cables carry 99% of intercontinental internet traffic, and form complex networks across the world. Jim Cowie, co-founder and chief technology officer at the network security company Renesys, said that internet connections had been slowed down as far away as Pakistan and India.
Internet connectivity in the Middle East was seriously affected in 2008 when ships' anchors cut through cables, which cut capacity between Europe and Africa by up to 70%.
Update: this article was corrected on 31 March 2013 to add the phrase "significant interruptions to internet services" at the end of the sixth paragraph, which had been omitted due to an editing error.

Posted on Tuesday, April 02, 2013 by Unknown

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Many folks setting up wireless home networks rush through the job to get their Internet connectivity working as quickly as possible. That's totally understandable. It's also quite risky as numerous security problems can result. Today's Wi-Fi networking products don't always help the situation as configuring their security features can be time-consuming and non-intuitive. The recommendations below summarize the steps you should take to improve the security of your home wireless network.

1. Change Default Administrator Passwords (and Usernames)

At the core of most Wi-Fi home networks is an access point or router. To set up these pieces of equipment, manufacturers provide Web pages that allow owners to enter their network address and account information. These Web tools are protected with a login screen (username and password) so that only the rightful owner can do this. However, for any given piece of equipment, the logins provided are simple and very well-known to hackers on the Internet. Change these settings immediately.

2. Turn on (Compatible) WPA / WEP Encryption

All Wi-Fi equipment supports some form of encryption. Encryption technology scrambles messages sent over wireless networks so that they cannot be easily read by humans. Several encryption technologies exist for Wi-Fi today. Naturally you will want to pick the strongest form of encryption that works with your wireless network. However, the way these technologies work, all Wi-Fi devices on your network must share the identical encryption settings. Therefore you may need to find a "lowest common demoninator" setting.

3. Change the Default SSID

Access points and routers all use a network name called the SSID. Manufacturers normally ship their products with the same SSID set. For example, the SSID for Linksys devices is normally "linksys." True, knowing the SSID does not by itself allow your neighbors to break into your network, but it is a start. More importantly, when someone finds a default SSID, they see it is a poorly configured network and are much more likely to attack it. Change the default SSID immediately when configuring wireless security on your network.

4. Enable MAC Address Filtering

Each piece of Wi-Fi gear possesses a unique identifier called the physical address or MAC address. Access points and routers keep track of the MAC addresses of all devices that connect to them. Many such products offer the owner an option to key in the MAC addresses of their home equipment, that restricts the network to only allow connections from those devices. Do this, but also know that the feature is not so powerful as it may seem. Hackers and their software programs can fake MAC addresses easily.

5. Disable SSID Broadcast

In Wi-Fi networking, the wireless access point or router typically broadcasts the network name (SSID) over the air at regular intervals. This feature was designed for businesses and mobile hotspots where Wi-Fi clients may roam in and out of range. In the home, this roaming feature is unnecessary, and it increases the likelihood someone will try to log in to your home network. Fortunately, most Wi-Fi access points allow the SSID broadcast feature to be disabled by the network administrator.

6. Do Not Auto-Connect to Open Wi-Fi Networks

Connecting to an open Wi-Fi network such as a free wireless hotspot or your neighbor's router exposes your computer to security risks. Although not normally enabled, most computers have a setting available allowing these connections to happen automatically without notifying you (the user). This setting should not be enabled except in temporary situations.

7. Assign Static IP Addresses to Devices

Most home networkers gravitate toward using dynamic IP addresses. DHCP technology is indeed easy to set up. Unfortunately, this convenience also works to the advantage of network attackers, who can easily obtain valid IP addresses from your network's DHCP pool. Turn off DHCP on the router or access point, set a fixed IP address range instead, then configure each connected device to match. Use a private IP address range (like 10.0.0.x) to prevent computers from being directly reached from the Internet.

8. Enable Firewalls On Each Computer and the Router

Modern network routers contain built-in firewall capability, but the option also exists to disable them. Ensure that your router's firewall is turned on. For extra protection, consider installing and running personal firewall software on each computer connected to the router.

9. Position the Router or Access Point Safely

Wi-Fi signals normally reach to the exterior of a home. A small amount of signal leakage outdoors is not a problem, but the further this signal reaches, the easier it is for others to detect and exploit. Wi-Fi signals often reach through neighboring homes and into streets, for example. When installing a wireless home network, the position of the access point or router determines its reach. Try to position these devices near the center of the home rather than near windows to minimize leakage.

10. Turn Off the Network During Extended Periods of Non-Use

The ultimate in wireless security measures, shutting down your network will most certainly prevent outside hackers from breaking in! While impractical to turn off and on the devices frequently, at least consider doing so during travel or extended periods offline. Computer disk drives have been known to suffer from power cycle wear-and-tear, but this is a secondary concern for broadband modems and routers.

If you own a wireless router but are only using it wired (Ethernet) connections, you can also sometimes turn off Wi-Fi on a broadband router without powering down the entire network.


Posted on Tuesday, April 02, 2013 by Unknown

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There is a new networking site built specifically for HTML5 developers, designers, programmers, and potential clients requiring HTML5 services.  The unfortunate aspect of the new site is that it does not yet have any members.  Without members, it is impossible to create an ecosystem to help us all learn more about HTML5.  If you have interest in learning or teaching about HTML5, please stop by the new site to create a profile.  Hopefully this will develop into a place of learning.  The site is found at www.HTML5Developers.org

Posted on Tuesday, April 02, 2013 by Unknown

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March 15, 2013




Unlike the Samsung Galaxy S4, the iPhone 5 has been launched just a while ago. The guys at Apple
were basically ecstatic for the 2 million pre-orders they had (with 1 million more than the pre-orders made for the iPhone 4S) and they started to promote their product a lot. We know that Android-running smartphones have been outselling the iPhones for a while now… do the Americans still think they have a chance in front of Samsung?
The Korea Times (the oldest English-language newspaper in South Korea) became world-famous due to its close relationship with some of Samsung’s employees. Their reporters found out that the Koreans at Samsung are going to launch their new Galaxy S series smartphone in February 2013, at Mobile World Congress in Barcelona. This quite surprises us if we think that the Samsung Galaxy S3 had a self-hosted event, and that device managed to reach 10 million sales in less than 55 days. According to some reporters of The Korea Times, the Samsung Galaxy S4 will be available all over the world somewhere in March 2013. Again, hard to believe, if we think that the Samsung Galaxy S3 needed almost two months to achieve that.
The price tag for a brand new, entry level Samsung Galaxy S4 would be of $629.95. The no-contract version of the iPhone 5 is $649 in the United States of America. But does it worth it? Let’s compare the devices and find out ourselves.

Design

The design of the Samsung Galaxy S4 will probably be similar to it’s predecessor, the Samsung Galaxy S3. However, the edges will be smaller in order to allow a wider screen to fit in, and the main physical button will disappear as well. The colors in which this product will be available are: black, white, gray, red and blue. From our point of view, this is quite important as the customers may prefer one color instead of the original black and white.
The iPhone 5′s design is basically similar to the iPhone 4 and iPhone 4S. Basically, the guys at Apple went for a wider screen and the same business-like, serious design. Unfortunately, the very new iPhone 5 is available only on two colors: black and white. In our opinion, at this chapter Samsung Galaxy S4 is the detached winner because of the variety it offers.

Display

When it comes to the display, the guys at Samsung decided that it would be a good idea to make it wider. So, the Koreans picked one 5.0 inch display (with 0.2 greater than the Samsung Galaxy S3′s) with a resolution of 1080×1920 Full HD and 440 PPI. The technology used for this screen is the Pentile Super AMOLED technology, also used at the Samsung Galaxy Note and Samsung Galaxy Note II. The display is protected by Corning Gorilla Glass 2, again, just like the Samsung Galaxy Note II.
Returning to the iPhone 5, the guys at apple will use the same old LED-backlit IPS TFT capacitive touchscreen with 16 million colors and 4.0 wide (with 0.5 wider than the iPhone 4S). The display provides a resolution of 640 x 1136 pixels, it features a density of 326 PPI and is protected by the first generation of Corning Gorilla Glass.
The conclusion? Samsung Galaxy S4′s display is with 1 inch wider, has 440 PPI instead of only 326, and it’s protected by the second generation of Corning Gorilla Glass, instead of the first, so is more unlike to be broken. Why would we choose some weird resolution display like iPhone?

Hardware

 

Regarding the hardware, the Samsung Galaxy S4 features one 2 GHz Quad-Core Cortex A15 processor, 2 GB of RAM memory, and of course, world-wide available LTE Connection, again, just like the Samsung Galaxy Note II. When it comes to the graphics card, the Koreans decided to go with Octo-core Mali T678 GPU, while the SIM card technology used will be nano-SIM. The device will be available in 3 different versions, of 32, 64, 128 GB, while the rear-faced camera will feature 13 MP.
Returning to Apple’s iPhone 5, this one features one 1.2 Dual-Core processor, 1 GB of RAM, and the Apple A6 chipset. The guys from Apple decided to go with the PowerVR SGX 543MP3 (triple-core graphics) graphics card, and with the nano-SIM technology as well. Just like the Samsung Galaxy S4, the iPhone 5 is available in 3 different versions of internal memory: 16, 32 and 64 GB. However, the Apple’s iPhone won’t feature a 128 GB version. The device will feature one 8 MP rear-faced camera, which develops a resolution of 3264 x 2448 pixels and another front-faced camera of 1.2 MP.
Our winner, is obviously the Samsung Galaxy S4, because it’s 2 GHz Quad-Core processor and the 2 GB of RAM memory.

Software

Now this is the best part! As some of you may have heard, rumors said that the Samsung Galaxy S4 will feature the Android 4.1 JellyBean. Not true! The new Galaxy S series device will come with the Android 4.2 version, called Key Lime Pie. This new Android version will come with a bunch of new and handy features. Let’s discuss them a bit!
The “Customization Center” will allow users to perform a whole variety of tasks, like changing wallpapers and ringtones. That would be its primary feature. Next to that, the Customization Center will also have de option to enable or disable OEM UI overlays like HTC’s Sense or Samsung’s TouchWiz. That’s an example of the guys at Google listening. Users began complaining of those since the moment when the manufacturers decided to implement them.
Another whole new feature of the Android 4.2 it is called “Templates”. This will basically allow users to change the layout and appearance of UI elements, and will offer the possibility to apply Instagram-like filters to their UI.
Returning to the iPhone’s iOS, yes, it has also a bunch of new features, but the feedback received from the users isn’t quite positive. Again, we’re going to let Samsung win that too.

Posted on Friday, March 15, 2013 by Unknown

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January 24, 2013

Hi , I will Show you today how to install and activate Eset Smart Security 6 till 2016

First , Download The Antivirus from the official Website  ESET Smart Security 6

Compatible With WinXP/7/Vista/WIN8




1 - The Installation : 












Now The Activation :
 download this text file which contains the username  and the password from Here 



 Right click on the eset smart security's tray Icon


 Username :EAV-78921396
Password : 4vcne6k55a


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Posted on Thursday, January 24, 2013 by Unknown

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January 16, 2013

I brought you today some  2 python books

First one
byteOfpython

The second
GrayHatPython



Posted on Wednesday, January 16, 2013 by Unknown

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January 4, 2013

When Files on  Windowsare to much, the access time becomes long to the desired file, so , coloring files will make you quickly identify the desired file among other files, because it will attract your eyes to the file or the folder.


 Folder Colorizer is 100% free application will help you to quickly locate folders by changing their color, you can choose between many colors provided by the program or you can choose your own color 

You can easily change you folder's color by clicking right on the mouse then choose colorize , and choose the color , or design your own.

You can always restore the original color , by klicking on restore original color

Download Folder colorizer from Original website Folder colorize Setup

The Program works on Windows 7 /XP and 8  (32bits/64bits)

Posted on Friday, January 04, 2013 by Unknown

1 comment

December 29, 2012





Alienware M18x R2 Gaming Notebook
Processor Intel Core i7-3820QM
(4x2.7GHz + HTT, 3.7GHz Turbo, 22nm, 8MB L3, 45W)
Chipset Intel HM77
Memory 4x4GB Hynix DDR3-1600 (Max 4x8GB)
Graphics 2x NVIDIA GeForce GTX 680M 2GB GDDR5 in SLI
(1344 CUDA cores, 719MHz/3.6GHz core/memory clocks, 256-bit memory bus)
Display 18.4" LED Glossy 16:9 1080p (1920x1080)
Samsung 184HT (SEC5448)
Hard Drive(s) 2x Samsung PM830 256GB SATA 6Gbps SSD in RAID 0
(includes open mSATA slot and third 2.5" drive bay)
Optical Drive Slot-loading Blu-ray/DVDRW Combo (HL-DT-ST CA30N)
Networking Atheros AR8151 PCIe Gigabit Ethernet
Killer Wireless-N 1103 Network Adapter
Bluetooth 4.0
Audio SoundBlaster Recon3Di (CA0132) HD Audio
Stereo speakers with subwoofer
S/PDIF, mic, and two headphone jacks
Battery 12-Cell, 11.1V, 97Wh
Front Side N/A (Speaker grilles)
Right Side ExpressCard/54
Slot-loading optical drive
MMC/SD/MS Flash reader
2x USB 3.0
eSATA/USB 2.0 combo port
HDMI input
Left Side Kensington lock
Ethernet port
VGA
HDMI
Mini-DisplayPort
2x USB 3.0
S/PDIF, mic, and two headphone jacks
Back Side AC jack
2x exhaust vents
Operating System Windows 7 Home Premium 64-bit
Dimensions 17.17" x 12.7" x 2.09-2.15"
436mm x 322.5mm x 53-54.7mm
Weight ~11.93 lbs (5.41kg)
Extras 2.1MP Webcam
Backlit keyboard with 10-key and programmable macro keys
Flash reader (MMC, SD/Mini SD, MS/Duo/Pro/Pro Duo)
USB 3.0
SoundBlaster Recon3Di with THX TruStudio Pro
Configurable lighting
Warranty 1-year standard warranty
2-year, 3-year, and 4-year extended warranties available
Pricing Starting at $1,999
Price as configured: $4,304

Posted on Saturday, December 29, 2012 by Unknown

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December 28, 2012

Hi , Friends
Today , I will show How To correctly install Internet download manager IDM

First , The crack used Is Totally clean , secure and fresh


  1. Download IDM from the official website  
IDM 6.14 Build 3


Download Crack from Here


Afer Downloading and installing the software , Copy the crack  and move it to the installation path program
it will tell you if you want to replace the original file
click on copy and replace

C:\Program Files\Internet Download Manager


Make sure that the program is not running before copying the crack

when finish
run the program and activate it with one of these serials

QA4M1-TIIBO-YMSWY-ROYRJ

LIDID-670KN-EMJO0-G51NU

9E41K-H3K1V-XPZUQ-SFBP9

D6DJI-SHZEG-566G0-OW1L7

43EI5-HXWMV-GCARB-ZSD6L

LBXIC-6GTK1-ICLR2-BQIVC

AECPR-346GP-M5MCW-N096K

C2WUV-DXDB3-O29XW-3S65K

35C76-1F0PF-BEDPY-FZKW5

66CHZ-DN5N1-KOELW-IO4ES




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Posted on Friday, December 28, 2012 by Unknown

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December 26, 2012

 Hi friends.You  can get access over blocked sites in Your college school or office. In this article i have listed top 6 free proxy sites by which you can surf anonymously on the web.



There is a lot of web proxy sites on the internet 
But, they are not all fast and powerful and high anonymity

So ,I have brought to you 6 of The best proxy sites " Powerful , fast , and with High anonymity "
 List Of 6 Free and Fast Proxy Sites
  1. HideMyAss
  2. WebProxy
  3. USA Proxy 
  4.  Gold Proxy
  5. Perfect Proxy 
  6. Web Proxy --USA 
If you don't know how to work with these sites i will show you 
 

First , Choose a site  and click on it. once you are in the site , do the following
 Me, i will choose USA Proxy

Me, I will choose this site http://whatismyipaddress.com/
to make sure that the IP address has been changed
This the Result 
You Will Notice That Your IP Address has been changed 

  Share This with your friends

Posted on Wednesday, December 26, 2012 by Unknown

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