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Tuesday, 17 January 2012

Dell XPS laptops are updated with Core i chips and JBL audio


Dell has given up AMD processors they based their latest Inspiron lineup on earlier this autumn, all in the name of the well-known XPS series. Yes, it has been a long time since Dell has upgraded XPSs, so this new release was taken seriously. Talking about processors, the new XPS notebooks are all Intel Core i-based and are equipped with Intel WiDi, NVIDIA GeForce GTX 400M series GPUs, JBL sound system and they are industry’s first to feature an HD webcam certified by Skype. There is a choice of three models with different screen sizes: 14-, 15.6- and 17-inches wide. Base models of Dell XPS 14, XPS 15, and XPS 17 laptops depending on screen size respectively are available under a thousand dollars, but you can order stronger pricier guts if you please. Likewise $899 XPS 14, $849 XPS 15 and $949 XPS 17 will deliver you 3D gaming fueled by an Intel Core i5, 1GB NVIDIA 420M, 4GB RAM and NVIDIA 3DTV Play software running from a 500GB HDD spinning at 7200rpm. Dell XPS laptops are already available today.

Small Tennis bat gadget for Wii from Shinobii Technologies



The device is made by Shinobii Technologies, by the looks of it will add another group of sports fans to the collection of Wii. It is said to be just the same size and weight as the real bat. No sticking out parts or anything to spoil your playing time. However it does have the standard control on it.

In addition to that it has a rechargeable battery so you won’t need get the spare ones every now and then. Oh, by the way it will be available online with the cost of $ 70 a piece.

Nintendo 3DS is delayed till Feb. - Mar. 2011



Bad news – Nintendo has announced today that its earlier announced gaming handheld console 3DS will be hold up from sales until later next year. You might know that Nintendo 3DS was previously suspended from 2010’s holyday season sales in American while still appearing in the market of Japan. So now neither of these countries and not any other will see 3DS console on sale soon enough to start thinking of one. Nintendo plans to start shipment to Japan in late winter (February 26 is the date as the officials suggest) and the rest of the planet will have to wait till March. Pricing, so far, remains at around $300.

LG Optimus 7 aka E900 shows itself again


LG Optimus 7 aka E900, a highly anticipated Windows Phone 7 handset, is due out in the mid October, but has already got its preview by our fellow Korean colleagues. In addition to what we already knew about the Optimus 7, their hands-on experience has added speech-to-text recognition. We hope that they were testing it in English, of course, or at least English will be supported by the Optimus 7 in English-speaking countries were it will come out. Another new feature is ability to shoot panoramic images by adding a couple of ordinary picture together, well, again, new to LG Optimus 7 of course. Follow the link for a splash of specs.

LG Optimus 7 aka E900 specifications:


Processor: 1GHz
Display: 800 × 480
Camera: 5MP
Memory: 16GB
Battery: 150mAh
Price: $650 (estimated)

HTC Shift runs Mac OS X 10.5.6, iPad doesn’t



Do you remember the HTC Shift? It has been with us since mid 2007, back in its days it was called names we barely ever come across today: an ultra mobile computer, a pocket PC and indeed a turning point in mobile device industry. Now though, rather unexpectedly, it has been given a new live. Well, it would have been given one if the hardware wasn’t so hopelessly outdated, but the news is that guys from xda developershave managed to get Mac OS X 10.5.6 up and running on HTC Shift. So can you with the help of their blog, an applicable OS build and an external hard drive or a flash. The thing that staggers me is how much technology of today is tighten up to money rather than progress. Anyway, question that is on minds of masses today is whether Apple themselves will ever ship their tablet running their desktop operating system or not. Given HTC Shift running Mac OS X I’d say they would if they will ever want to.

HTC 7 Trophy aka Sparks leaks its specs


HTC 7 Trophy aka Sparks being initially a smartphone designed for European 3G network has been interesting for folks in the US only as a platform for the American analogue. Now when we have Trophy’s specifications leaked we can start thinking of how its analogue will kick off in the States. By looking at the specs, by the way, HTC 7 Trophy doesn’t look too much like a show-stopper. We will be honest about it: we are looking forward to have the Trophy around chiefly because of Windows Phone 7 onboard. But average smartphone-side specs can give the Trophy a very compatible price hence a decent bite of the market. Check out the specs after the jump.

HTC 7 Trophy aka Sparks specifications:


Processor: Qualcomm Snapdragon QSD 8250 @ 1GHz
ROM: 512MB
RAM: 576MB
Memory: 8GB microSD
Display: 3.8-inch LCD 480 × 800 multi-touch capacitive touchscreen
Camera: 5 megapixel w/ LED flash and autofocus
Network: HSPA/UMTC 900/2100MHz and GSM/GPRS/EDGE 850/900/1800/1900MHz
OS: Windows Phone 7

Marvell Armada 628 triple core mobile processor seems to be the future



Nevermind what we looking forward to earlier considering mobile processors, we couldn’t predict this – Marvell has already prepared for production its Armada 628 mobile processor featuring three cores. Core management is where new Marvell SoC stands out from the crowd. They all share 1MB of L2 cache but two out of three cores run at 1.5GHz each and handle, so to say, resource hungry tasks such as gaming, video decoding, etc. while the third core runs at just 624MHz and does only routine tasks in the background. So compared to any dual core mobile processor Armada 628 uses less energy which is never a bad feature. Speaking of which, Marvell Armada 628 can playback Full HD 1080p video for 10 hours, playback Hi-Fi audio for 140 hours (these hugely depend on battery, of course), render 3D graphics, process digital images plus so much more. Armada 628 also supports DDR3 memory and USB 3.0 connectivity and I repeat: OEMs can lay their hands on it right now.

Seagate FreeAgent GoFlex 1.5TB - smaller USB 3.0 external HDD altrernative



Here we go again, last week we reviewed LaCie 2big USB 3.0 external hard drive. A 2 or 4 terabyte monster nearly fits to excess space what your desk has of it and even comes with fans. And it still can perfectly be fine for many, many of you. But now Seagate has released something that I think overall is better. 1.5 terabyte FreeAgent GoFlex has 2.5-inch form-factor, comes in stylish glossy black that corresponds to its portable nature. Of course, it also has USB 3.0 interface and is Mac and PC friendly. 2.5-inch body design sure is where FreeAgent GoFlex takes on its yet few bigger rivals, but, as it appears, it also is cheaper in total and (just a little bit) cheaper per terabyte. 2TB FreeAgent GoFlex costs $249.99 and is already available on the Internet and at reseller points.

Dell Inspiron updated and ranked by VISION Technology



Dell has prepared an Inspiron notebook lineup update for this week. As you probably know, Dell is sticking with AMD lately, so both new Inspiron M5030 and Inspiron M501R in all of their available variations feature AMD processors and graphics cards. But not only that, Dell has also got into ranking their laptops as provided by VISION Technology which labels capabilities of any given computer considering all the factors so that you could judge it solely by VISION Technology sticker without going into its specifications. With this in mind, out of four stars Inspiron M5030 scores one and Inspiron M501R scores three. The reasons why M501R jumps up two steps past M5030 are down to Phenom processor and Mobility Radeon HD 5500 graphics adapter while M5030 has an Athlon II and Mobility Radeon HD 4250. I really don’t mind Athlon II but HD 4000 series is far too dated already. Take it away and you end up with I think more honest Inspiron M101z also getting one out four VISION rating.

Dell Inspiron M501R specifications:


Processor: AMD Phenom II X4 N930 @ 2.0GHz
System memory: 4GB DDR3 @ 1333MHz
Graphics card: ATI Mobility Radeon HD 5500
Storage: 500GB (320GB) @ 5400rpm
Display: 15.6-inch w/ LED backlit @ 1366 × 768
Camera: 1.3 megapixel webcam
Battery: 6-cell Li-Ion
Wireless: 802.11b/g/n Wi-Fi
Operating system: Windows 7 Home Premium 64bit
Price: $799.99 ($749.99)

Dell Inspiron M5030 specifications:


Processor: AMD Athlon II Dual-Core Mobile Processor P320 @ 2.1GHz
System memory: 4GB DDR3 @ 1333MHz
Graphics card: ATI Mobility Radeon HD 4250
Storage: 500GB (320GB) @ 5400rpm
Display: 15.6-inch w/ LED backlit @ 1366 × 768
Battery: 6-cell Li-Ion
Wireless: 802.11b/g/n Wi-Fi
Operating system: Windows 7 Home Premium 64bit
Price: $599.99 ($529.99)

Dell Inspiron M101z specifications:


Processor: AMD Athlon II Neo Dual-Core Mobile Processor K320 @ 1.3GHz
System memory: 4GB DDR3 @ 800MHz
Graphics card: AMD RS880 integrated graphics
Storage: 320GB @ 7200rpm
Display: 11.6-inch w/ LED backlit @ 1366 × 768
Battery: 6-cell Li-Ion
Operating system: : Windows 7 Home Premium
Price: $549.99

LaCie 2big USB 3.0 external HDD for pro's and geeks



Today I want to thank LaCie for making another step towards SuperSpeed technology. Both peripherals and desktops or notebooks coming out with USB 3.0 so far are from big brands in the industry. So, LaCie, already having a range of USB 3.0 external HDDs, is expanding it today with a biggest storage-wise solution. The new 2big USB 3.0 really is one or two to your choice 2TB 7200rpm RAID hard drive with SuperSpeed interface. 2big has three RAID modes: fast, safe and JBOD which is best for scheduled separate back-ups. Fast back-ups, at up to 205MBps. Prices start at $349.99 for 2TB model and 4TB model will cost you $579.99.

Monday, 16 January 2012

Google & T-Mobile announce G2



When Nexus One was dropped from supply support by Google earlier this year there was a certain sense that its successor will not take long to come. And it hasn’t. T-Mobile together with Google, of course, have announced today G2 smartphone for forth-coming preorder availability. An obvious rival for Galaxy S and Droid families which is not an apparent thing if you look at the T-Mobile G2’s specifications. It doesn’t even have a 1GHz processor to show off. And this in the times when we are in expectations for so much more. I am not trying to downgrade G2 ahead of its launch, I am getting to the point that all successful smartphones have an X-factor regardless of specs and this is where I expect T-Mobile G2 to shine. But I still encourage you to get acquainted with the G2 specifications what there is of them anyway.

T-Mobile G2 specifications:


Processor: Qualcomm Snapdragon MSM7230 @ 800MHz
Storage: 4GB + 8GB microSD, support up to 32GB
Display: 3.7-inch
Camera: 5Mpixel w/ LED flash, 720p HD video
Input method: QWERTY slider + Swype
Operating system: Android 2.2
Network: T-Mobile HSPA+, up to 14.4Mbps

Nuu Mini Key iPhone 4 case w/ physical keyboard is cooking



I will be honest with you – I am a fan of smartphone physical docking keyboards. Smartphones are used a lot by people sitting in their offices all day long and a physical QWERTY really works for those of them who only have an onscreen keyboard. Usually, however it is a matter of if you got used to soft keys before a clamshall purchase. Anyway, Nuu will release a new one for iPhone 4 by winter holidays. They call it a Mini Key, it connects to the iPhone 4 via Bluetooth and will cost you $69. Oh yeah, Nuu still plays that old antenna gate tune but I don’t think Mini Key owner will use it as a case all the time.

Samsung’s new RF, QX and NF notebook line-ups



Samsung has started the day with their new notebook family announcement. To give it a short review I’d say five out of six new Samsung notebooks are perfectly faceted for studying needs which means they are not too big, not too small, not too posh and not too humble. The sixth one however is a netbook and doesn’t share key features its bigger brothers have: Intel Core i-series processors and NVIDIA Optimus graphics technology. Samsung has done a great job keeping most of that goodness under a thousand dollars and only top models are barely exceeding this level. Continued with exact MSRPs and full specs.

Samsung RF710 specifications:


Processor: Intel Core i7-720QM @ 1.6GHz
Graphics: NVIDIA GeForce GT 330M w/1GB dedicated memory
System memory: 4GB DDR3
Storage: 640GB HDD
Display: 17.3-inch LED, 1600 × 600
Wireless: 802.11b/g/n Wi-Fi; Bluetooth 3.0
Battery: Li-Ion, up to 4.5hrs
Weight: 6.4lbs
Operating system: Windows 7 Home Premium 64-bit 
MSRP: $1,099

Samsung RF510-S02 specifications:


Processor: Intel Core i7-720QM @ 1.6GHz
Graphics: NVIDIA GeForce GT 330M w/ 1GB dedicated memory
System memory: 4GB DDR3
Storage: 640GB HDD
Display: 15.6-inch LED, 1366 × 768
Wireless: 802.11b/g/n Wi-Fi; Bluetooth 3.0
Battery: Li-Ion, up to 4.5hrs
Weight: 5.7lbs
Operating system: Windows 7 Home Premium 64-bit 
MSRP: $1,079

Samsung RF510-S01 specifications:


Processor: Intel Core i5-460M @ 2.53GHz
Graphics: NVIDIA GeForce GT 330M w/ 1GB dedicated memory
System memory: 4GB DDR3
Storage: 500GB HDD
Display: 15.6-inch LED, 1366 × 768
Wireless: 802.11b/g/n Wi-Fi; Bluetooth 3.0
Battery: Li-Ion, up to 4.5hrs
Weight: 5.7lbs
Operating system: Windows 7 Home Premium 64-bit 
MSRP: $939

Samsung QX410 specifications:


Processor: Intel Core i5-460M @ 2.53GHz
Graphics: NVIDIA GeForce 310M w/ 512MB dedicated memory
System memory: 4GB DDR3
Storage: 640GB HDD
Display: 14-inch LED, 1366 × 768
Wireless: 802.11b/g/n Wi-Fi; WiMax
Battery: Li-Ion, up to 7hrs
Weight: 5lbs
Operating system: Windows 7 Home Premium 64-bit 
MSRP: $929.99

Samsung NF210 specifications:


Processor: Intel Atom N455 @ 1.66GHz
Graphics: Intel GMA3150 integrated graphics
System memory: 1GB DDR3
Storage: 250GB HDD
Display: 10.1-inch LED, 1024 × 600
Wireless: 802.11b/g/n Wi-Fi
Battery: Li-Ion, up to 14hrs
Weight: 2.97lbs
Operating system: Windows 7 Starter 
MSRP: $379.99

ARM Cortex-A9 - a 28nm, 2GHz beast



Have you ever wondered whether desktop and notebooks processors or smartphone processor are more high-tech? Sure, first two have a lot more computing power, but ARM Cortex microprocessor family – being a well known mobile SoC platform – is waiting for an important Cortex-A9 update later this year. ARM together with GLOBALFOUNDRIES have found a way to optimize High-K Metal Gate technology for Cortex-A9 chip. High-K Metal Gate, or HKMG for short, is industry first 28nm fabrication process technology and I doubt there is a need go to though all small fabrication process advantages here (high-end desktop solutions are only 32nm feature-sized). ARM Cortex-A9 reportedly goes into mass production in late 2010 clocked at around 2GHz. Still, ARM is not out of ideas so far. Even now they are already planning on a 20nm SoC in two year time. Fabrication process is indeed the new clock speed.

Motorola Milestone 2 arrived and is better than Droid 2



Motorola Milestone 2 will be released in Europe as we all could see from the promotional video. This unit is a GSM-version of the smartphone Droid 2, intended for the U.S. market. At this point exactly, Motorola Milestone 2 will be available only in Germany. The date of its appearance on store shelves is not specified so far.

Milestone will be running Android 2.2, it will have a 3.7-inch touch screen display with a resolution 854x480 pixels, QWERTY-keyboard and a 5-megapixel camera. It will have a 1 GHz OMAP processor, 512 MB of RAM. In addition, he will have 8 GB of internal flash memory and microSD card of the same volume in the box.

Thanks to its Android OS the user will be able to convert his phone into a Wi-Fi access point. Also among the notable features the device can record video in HD resolution, which Droid 2 could not do. In addition to that it will support Flash 10.1.

Samsung Fascinate is due out next week



We are happy to report that rumors around Samsung Fascinate smartphone were correct and it really is due out in the middle of the next week. Fascinate from the Samsung’s Galaxy S line-up is getting ready for Internet launch on Wednesday, September 8 and will appear on shelves in a store near you right on the next day. I have to confess that I get confused with Galaxy S’ models feature-spread from time to time. So if you are with me on this check out Samsung Facinate’s specs after the jump.

Samsung Fascinate specifications:

Processor: 1GHz Cortex A8 Hummingbird
RAM: 336MB
ROM: 512MB
Storage: 16GB, expandable up to 32GB
Display: 4" Super AMOLED, 800 × 480
Network: CDMA, Wi-Fi, 3G mobile hotspot up to 5 connections
Camera: 5Mpx, HD 720p video
OS: Android 2.1

Mozilla Fennec 2.0 Alpha 1 brings HTML5 and more



Good news everyone! Mozilla has pushed their upcoming mobile browser aka Fennec into Alpha faze and lets everyone try it out before Mozilla developers come up with a more stable and capable release. And that is good for a number of reasons. First of all Fennec 2.0 Alpha 1 is compatible with Android version 2.0 and higher and MeeGo platforms which means that apart from most Android devices you can also install it on Nokia N900. Please note that the latest Alpha release of the Fennec is optimized for Nexus One and will behave differently while running on other devices.

Android market is obviously very important for mobile software companies but right now it really starts to look like Mozilla deosn’t want to leave MeeGo aside for long too. Probably because MeeGo is Linux-based and desktop architecture is what Mozilla trying to bring with Fennec 2.0 which is based on Firefox 4.0. That means Fennec makes the best out of latest Web technologies such as HTML5, CSS and JavaScript. But not only this is what travels from desktops to smartphones with Fennec. They have also added Firefox Sync, add-ons, tabbed browsing, customizable start page, etc. – everything for effortless switching from PC to smartphone.

But mobile experience will never be like desktop one so Fennec also caries such straight smartphone features like pinch-to-zoom or double-tab to zoom content in and out, press-and-hold for a submenu and even tabs are not tabs as such they are small thumbnails of the page they take you to. But that’s alright, isn’t it? Anyway, because it is an Alpha, it has bugs. So if you are interested in testing Fennec 2.0 on Android, MeeGo, Windows, Linux, Mac or you want to develop add-ons for it don’t forget to look through its known issues at Mozilla website.

Asus NX90Jq multimedia notebook with Bang & Olufsen treatment is out



ASUSTeK Computer has finally released their long awaited, since mid winter in fact, NX90Jq multimedia notebook. Back then it was marvelous even just to look at. Bang & Olufsen design coupled with latest computing hardware at the moment of announcement (one of the first notebooks to feature Intel’s Turbo Boost) made everyone sure that the price will be high, but NX90Jq will be worth it. Now, eight months later, NX90Jq has lost none of its original appeal considering B&O sound system, aluminum chassis, Full HD display and USB 3.0 support. However, since then Intel has released a six-core Core i7 processor over quad-core that is in NX90Jq. But the thing I can’t skip over is lack of DirectX 11 compatible graphics card. At price higher than $2K wherever you look for it Asus really had to consider at least a graphics update for the launch.
    ASUSTeK NX90Jq specifications:
  • Processor: Intel Core i7 820QM @ 1.73GHz or 720QM @ 1.6GHz
  • System memory: DDR3 @ 1333 or DDR3 @ 1066
  • Graphics card: NVIDIA GeForce GT335M w/1GB VRAM
  • Hard drive: up to 2 × 640GB @ 5400rpm
  • Display: 18.4-inch 16:9 Full HD 1920 × 1080
  • Optical drive: Blu-Ray DVD Combo
  • Connectivity: HDMI, 2 × USB 3.0, 2 × USB 2.0, 802.11 b/g/n Wi-Fi
  • Battery: 6 cells, 5600mAh
  • Price: $2500 aprox.

Sunday, 8 January 2012

How Computer Viruses Work



Introduction to How Computer Viruses Work


Strange as it may sound, the computer virus is something of an Information Age marvel. On one hand, viruses show us how vulnerable we are -- a properly engineered virus can have a devastating effect, disrupting productivity and doing billions of dollars in damages. On the other hand, they show us how sophisticated and interconnected human beings have become.
For example, experts estimate that theMydoom worm infected approximately a quarter-million computers in a single day in January 2004. Back in March 1999, theMelissa virus was so powerful that it forced Microsoft and a number of other very large companies to completely turn off their e-mail systems until the virus could be contained. The ILOVEYOU virusin 2000 had a similarly devastating effect. In January 2007, a worm called Storm appeared -- by October, experts believed up to 50 million computers were infected. That's pretty impressive when you consider that many viruses are incredibly simple.
When you listen to the news, you hear about many different forms of electronic infection. The most common are:
Viruses: A virus is a small piece of software that piggybacks on real programs. For example, a virus might attach itself to a program such as a spreadsheet program. Each time the spreadsheet program runs, the virus runs, too, and it has the chance to reproduce (by attaching to other programs) or wreak havoc.
E-mail viruses: An e-mail virus travels as an attachment to e-mail messages, and usually replicates itself by automatically mailing itself to dozens of people in the victim's e-mail address book. Some e-mail viruses don't even require a double-click -- they launch when you view the infected message in the preview pane of your e-mail software 
Trojan horses: A Trojan horse is simply a computer program. The program claims to do one thing (it may claim to be a game) but instead does damage when you run it (it may erase your hard disk). Trojan horses have no way to replicate automatically.
Worms: A worm is a small piece of software that uses computer networks and security holes to replicate itself. A copy of the worm scans the network for another machine that has a specific security hole. It copies itself to the new machine using the security hole, and then starts replicating from there, as well.
In this article, we will discuss viruses -- from "traditional" viruses to e-mail viruses and exploits that could target your mobile phone -- so that you can learn how they work and understand how to protect yourself.

Virus Origins


Computer viruses are called viruses because they share some of the traits of biological viruses. A computer virus passes from computer to computer like a biological virus passes from person to person.
Unlike a cell, a virus has no way to reproduce by itself. Instead, a biological virus must inject its DNA into a cell. The viral DNA then uses the cell's existing machinery to reproduce itself. In some cases, the cell fills with new viral particles until it bursts, releasing the virus. In other cases, the new virus particles bud off the cell one at a time, and the cell remains alive.
Similar to the way a biological virus must hitch a ride on a cell, a computer virus must piggyback on top of some other program or document in order to launch. Once a computer virus is running, it can infect other programs or documents. Obviously, the analogy between computer and biological viruses stretches things a bit, but there are enough similarities that the name sticks.
People write computer viruses. A person has to write the code, test it to make sure it spreads properly and then release it. A person also designs the virus's attack phase, whether it's a silly message or the destruction of a hard disk. Why do they do it?
There are at least four reasons. The first is the same psychology that drives vandals and arsonists. Why would someone want to break a window on someone's car, paint signs on buildings or burn down a beautiful forest? For some people, that seems to be a thrill. If that sort of person knows computer programming, then he or she may funnel energy into the creation of destructive viruses.
The second reason has to do with the thrill of watching things blow up. Some people have a fascination with things like explosions and car wrecks. When you were growing up, there might have been a kid in your neighborhood who learned how to make gunpowder. And that kid probably built bigger and bigger bombs until he either got bored or did some serious damage to himself. Creating a virus is a little like that -- it creates a virtual bomb inside a computer, and the more computers that get infected, the more "fun" the explosion.
The third reason involves bragging rights. Sort of like Mount Everest -- the mountain is there, so someone is compelled to climb it. If you are a certain type of programmer who sees a security hole that could be exploited, you might simply be compelled to exploit the hole yourself before someone else beats you to it.
And then there's cold, hard cash. Viruses can trick you into buying fake software, steal your personal information and use it to get to your money, or be sold on the digital equivalent of the black market. Powerful viruses are valuable -- and potentially lucrative -- tools.
Of course, most virus creators seem to miss the point that they cause real damage to real people with their creations. Destroying everything on a person's hard disk is real damage. Forcing a large company to waste thousands of hours cleaning up after a virus attack is real damage. Even a silly message is real damage because someone has to waste time getting rid of it. For this reason, the legal system continues to develop more rigorous penalties for people who create viruses.

Virus History


Traditional computer viruses were first widely seen in the late 1980s, and came about because of several factors. The first factor was the spread of personal computers (PCs). Prior to the 1980s, home computers were nearly non-existent. Real computers were rare, and were locked away for use by "experts." During the '80s, real computers started to spread to businesses and homes because of the popularity of the IBM PC (released in 1982) and the Apple Macintosh (released in 1984). By the late 1980s, PCs were in businesses, homes and college campuses.
The second factor was the use of computer bulletin boards. People could dial up a bulletin board with a modem and download programs of all types. Games were extremely popular, and so were simple word processors, spreadsheets and other productivity software. Bulletin boards led to the precursor of the virus known as the Trojan horse. A Trojan horse masquerades as a program with a cool-sounding name and description, enticing you to download it. When you run the program, however, it does something uncool, like erasing your hard drive. You think you're getting a neat game, but instead, you get a wiped-out system. Trojan horses only hit a small number of people because they're quickly discovered, and word of the danger spreads among users.
The third factor that led to the creation of viruses was the floppy disk. In the 1980s, programs were small, and you could fit the entire operating system, a few programs and some documents onto a floppy disk or two. Many computers did not have hard disks, so when you turned on your machine it would load the operating system and everything else from the floppy disk. Virus authors took advantage of this to create the first self-replicating programs.
Early viruses were pieces of code embedded in a larger, legitimate program, such as a game or word processor. When the user downloads and runs the legitimate program, the virus loads itself into memory --­ and looks around to see if it can find any other programs on the disk. If it can find one, it modifies the program to add the virus's code into that program. Then the virus launches the "real program." The user really has no way to know that the virus ever ran. Unfortunately, the virus has now reproduced itself, so two programs are infected. The next time the user launches either of those programs, they infect other programs, and the cycle continues.
If one of the infected programs is given to another person on a floppy disk, or if it is uploaded so other people can download it, then other programs get infected. This is how the virus spreads -- similar to the infection phase of a biological virus. But viruses wouldn't be so violently despised if all they did was replicate themselves. Most viruses also have a destructive attack phase where they do real damage. Some sort of trigger will activate the attack phase, and the virus will then do something -- anything from displaying a silly message on the screen to erasing all of your data. The trigger might be a specific date, a number of times the virus has been replicated or something similar.
In the next section, we will look at how viruses have evolved over the years.

Virus Evolution


Virus creators have added new tricks to their bag throughout the years. One such trick is the ability to load viruses into memory so they can keep running in the background as long as the computer remains on. This gives viruses a much more effective way to replicate themselves. Another trick is the ability to infect the boot sector on floppy disks and hard disks. The boot sector is a small program that is the first part of the operating system that the computer loads. It contains a tiny program that tells the computer how to load the rest of the operating system. By putting its code in the boot sector, a virus can guarantee it's executed. It can load itself into memory immediately, and run whenever the computer is on. Boot sector viruses can infect the boot sector of any floppy disk inserted in the machine, and in places like college campuses, where lots of people share machines, they can spread like wildfire.
In general, neither executable nor boot sector viruses are very threatening today. The first reason for their decline has been the huge size of today's programs. Most programs you buy today come on compact discs. Commercially distributed compact discs (CDs) cannot be modified, and that makes viral infection of a CD unlikely, unless the manufacturer permits a virus to be burned onto the CD during production. People certainly can't carry applications around on floppy disks like they did in the 1980s, when floppies full of programs were traded like baseball cards. Boot sector viruses have also declined, because operating systems now routinely protect the boot sector.
Infection from boot sector viruses and executable viruses is still possible. Even so, it's a lot less likely than it once was. Call it "shrinking habitat," if you want to use a biological analogy. The environment of floppy disks, small programs and weak operating systems made these viruses possible in the 1980s, but that environmental niche has been largely eliminated by huge executables, unchangeable CDs and better operating system safeguards.
E-mail viruses are probably the most familiar to you. We'll look at those in the next section.

E-mail Viruses


Virus authors adapted to the changing computing environment by creating the e-mail virus. For example, the Melissa virus in March 1999 was spectacular in its attack. Melissa spread in Microsoft Word documents sent via e-mail, and it worked like this:
Someone created the virus as a Word document and uploaded it to an Internet newsgroup. Anyone who downloaded the document and opened it would trigger the virus. The virus would then send the document (and therefore itself) in an e-mail message to the first 50 people in the person's address book. The e-mail message contained a friendly note that included the person's name, so the recipient would open the document, thinking it was harmless. The virus would then create 50 new messages from the recipient's machine. At that rate, the Melissa virus quickly became the fastest-spreading virus anyone had seen at the time. As mentioned earlier, it forced a number of large companies to shut down their e-mail systems to control the spread.
The ILOVEYOU virus, which appeared on May 4, 2000, was even simpler. It contained a piece of code as an attachment. People who double-clicked on the attachment launched the code. It then sent copies of itself to everyone in the victim's address book and started corrupting files on the victim's machine. This is as simple as a virus can get. It is really more of a Trojan horse distributed by e-mail than it is a virus.
The Melissa virus took advantage of the programming language built into Microsoft Word called VBA, or Visual Basic for Applications. It is a complete programming language and it can be used to write programs that do things like modify files and send e-mail messages. It also has a useful but dangerous auto-execute feature. A programmer can insert a program into a document that runs instantly whenever the document is opened. This is how the Melissa virus was programmed. Anyone who opened a document infected with Melissa would immediately activate the virus. It would send the 50 e-mails, and then infect a central file called NORMAL.DOT so that any file saved later would also contain the virus. It created a huge mess.
Microsoft applications have a feature called Macro Virus Protection built into them to prevent this sort of virus. With Macro Virus Protection turned on (the default option is ON), the auto-execute feature is disabled. So, when a document tries to auto-execute viral code, a dialog pops up warning the user. Unfortunately, many people don't know what macros or macro viruses are, and when they see the dialog they ignore it, so the virus runs anyway. Many other people turn off the protection mechanism. Because of this, the Melissa virus spread despite the safeguards in place to prevent it.
In the case of the ILOVEYOU virus, the whole thing was human-powered. If a person double-clicked on the program that came as an attachment, then the program ran and did its thing. What fueled this virus was the human willingness to double-click on the executable. The same kinds of exploits have also been passed over instant messaging networks like AIM and Windows Live Messenger. Commandeered accounts will send out links to viruses in instant messages; anyone who clicks the link and installs a Trojan application will have their own account hijacked and unwittingly spam their own friends with the compromising link.
Now that we've covered e-mail viruses, let's take a look at worms.

Worms


A worm is a computer program that has the ability to copy itself from machine to machine. Worms use up computer processing time and network bandwidth when they replicate, and often carry payloads that do considerable damage. A worm called Code Red made huge headlines in 2001. Experts predicted that this worm could clog the Internet so effectively that things would completely grind to a halt.
A worm usually exploits some sort of security hole in a piece of software or the operating system. For example, the Slammer worm (which caused mayhem in January 2003) exploited a hole in Microsoft's SQL server. Wired magazine took a fascinating look inside Slammer's tiny (376 byte) program.
Worms normally move around and infect other machines through computer networks. Using a network, a worm can expand from a single copy incredibly quickly. The Code Red worm replicated itself more than 250,000 times in approximately nine hours on July 19, 2001 [Source: Rhodes].
The Code Red worm slowed down Internet traffic when it began to replicate itself, but not nearly as badly as predicted. Each copy of the worm scanned the Internet for Windows NT or Windows 2000 servers that did not have the Microsoft security patch installed. Each time it found an unsecured server, the worm copied itself to that server. The new copy then scanned for other servers to infect. Depending on the number of unsecured servers, a worm could conceivably create hundreds of thousands of copies.
The Code Red worm had instructions to do three things:
Replicate itself for the first 20 days of each month
Replace Web pages on infected servers with a page featuring the message "Hacked by Chinese"
Launch a concerted attack on the White House Web site in an attempt to overwhelm it [source: eEyeDigitalSecurity]
Upon successful infection, Code Red would wait for the appointed hour and connect to the www.whitehouse.gov domain. This attack would consist of the infected systems simultaneously sending 100 connections to port 80 of www.whitehouse.gov (198.137.240.91).
The U.S. government changed the IP address of www.whitehouse.gov to circumvent that particular threat from the worm and issued a general warning about the worm, advising users of Windows NT or Windows 2000 Web servers to make sure they installed the security patch.
A worm called Storm, which showed up in 2007, immediately started making a name for itself. Storm used social engineering techniques to trick users into loading the worm on their computers. And boy, was it effective -- experts believe between 1 million and 50 million computers have been infected [source: Schneier]. Anti-virus makers adapted to Storm and learned to detect the virus even as it went through many forms, but it was easily one of the most successful viruses in Internet history and could someday rear its head again. At one point, the Storm worm was believed to be responsible for 20 percent of the Internet's spam mail [source: Kaplan].
When the worm is launched, it opens a back door into the computer, adds the infected machine to a botnet and installs code that hides itself. Botnets are small peer-to-peer groups, rather than a larger, more easily identified network. Experts think the people controlling Storm rent out their micro-botnets to deliver spam or adware, or for denial-of-service attacks on Web sites.
Viruses of all kinds were a major threat in the early years of the Internet's growth. They're still out there, but since the mid-2000s anti-virus software has gotten better and Web browsers and operating systems have become more secure. Will the big threat of the 2010s be levied against smartphones rather than PCs?

Viruses In the 2000s and Beyond


New viruses pop up all the time, but it's rare for a worm or other exploit to have the kind of impact that Storm once did. The 10 Worst Computer Viruses of All Time struck around the turn of the century and in the early 2000s. Computers were ripe targets: Anti-virus software was expensive and not always reliable, Microsoft's Internet Explorer was ripe for exploitation and PC users were unaware of how easily viruses could spread over the Internet. Viruses haven't had the same kind of impact in recent years for a number of reasons.
People are a bit better educated about viruses. Free anti-virus software is easy to download. Microsoft recommends its own Security Essentials, while companies like AVG and Avast offer their own free alternatives. Computer software, in general, is designed with the Internet in mind and is less susceptible to viruses. Just compare today's Chrome and Firefox browsers to the infamously terrible Internet Explorer 6, which was patched for over a decade after its release in 2001. Viruses are still around, of course -- in 2009, a worm called Downadup infected millions of computers in a matter of days. We're just getting better at handling them.
There are more viruses than ever out there for anti-virus software to keep track of. These programs will automatically update themselves regularly -- often even daily -- to guard against the latest virus mutations on the Internet. Just look at Avast's Virus Update History to see how many Trojans, worms and other nefarious bits of code are added to the database every day.
In a modern era of smartphones and tablets, it's actually easier than ever to browse the Internet without getting a virus. Why? Because viruses are written for specific platforms. A virus intended to exploit something on Windows won't work on Apple's Mac operating system -- the code that makes up the two systems is completely different. Similarly, the code that makes up mobile operating systems like Android and iOS is different from the code on PCs. Viruses that would cripple your computer won't work on mobile devices.
But mobile devices aren't completely secure, themselves. There are viruses out there that can extract personal information from Android phones. Because Apple's iOS is a closed source platform, unlike the open source Android, it's more difficult to target with viruses. Besides, Windows is still a juicier target. While mobile viruses will certainly become more popular as smartphone sales increase, as of 2011, they're a very minor concern.

Saturday, 7 January 2012

Create a Windows e-mail shortcut


If you have a friend, family member, or co-work that you often e-mail creating an e-mail shortcut link on your Desktop orTaskbar can be a quick and easy way to e-mail them. To create an e-mail shortcut follow the below steps.
1. Right-click the Desktop or area you want to create the e-mail shortcut and select New and then Shortcut.
2. For the location or path to the shortcut entermailto:friend@example.com where friend@example.com is the e-mail address you want to use in the shortcut.
Email Windows shortcut
3. Click Next and then type the name of the Shortcut and clickFinish.
Now when this shortcut is clicked a new e-mail window will appear with that e-mail address already typed into the To field.
Bonus Tip If you're running Microsoft Windows 7, you can also pinthis shortcut to your Taskbar. If you already have your e-mail client pinned on the Taskbar right-clicking that icon will show your new pinned shortcut.

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