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Showing posts with label Computer. Show all posts
Showing posts with label Computer. Show all posts

Jan 4, 2012

The Best Computer For Graphic Design

Since Desktop Publishing (DTP) came out in the eighties, graphic designers have been utilizing computer technology. This has pushed all graphic designers to become competent with computer hardware at the very least.

What is Desktop Publishing (DTP)? In the 1980s, it was a common term applied to digital publishing systems. These systems were developed to replace large, pre-press, specialist design and compositing systems.

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Graphic designers rely heavily on computers whether these are Windows PCs or Apple Macs. Whichever computer a graphic designer chooses to use, he/she will opt for the best computer that he/she can purchase. Graphic designers will rarely choose cheap computer hardware.

The Best Computer For Graphic Design

Back in the eighties, Macs were the only choice for designing and printing. Almost all design layout and graphics software was developed for Macs only or even if the software could be used in Microsoft Windows PC, it was much more reliable on a Mac. Additionally, at that time, Macs were associated with the different technologies used in the prepress and Windows PC was just not a practical choice. Today, modern versions of Mac OS X and Windows allow graphics designers to use design software either in a Mac or PC - they are no longer forced to choose one over the other.

Many graphic designers are not IT experts and making a decision on which computer to buy can be quite daunting. Of course, if money is not a problem, the decision would simply be to buy the most expensive Apple Mac or Windows PC. But most designers cannot afford to do that. In fact, some creative professionals have budgets for second hand equipment only. What really matters to these graphic designers are issues that regular computer users do not even have to think about. These are printer color accuracy, monitor calibration, hard disk speed and external storage devices for gigabytes of data.

Recent studies show that the top 5 computers for graphic design are a mix of Macs and PCs and both laptop and desktop computers fall in this category. But just like any product that a consumer buys, it really is the personal preference of the designer whether he/she will use a desktop computer or a laptop. The important thing is that the user/graphic designer has the appropriate software for the type of computer that he/she wants to purchase.

The Top 5 computers for graphic design are:

Mac Pro Desktop

The Mac line of computers is still widely preferred by most graphic designers. According to Apple, the latest Mac Pro features the all new quad-core Intel Xeon "Nehalen" processor which makes the job of a graphic designer much easier. Apple states further that the new Mac Pro is up to 1.9 times faster than its predecessor. Each processor has an integrated memory controller that allows the processors to have faster access to stored data in the computer's memory, with memory latency decreased by up to 40 percent. This feature will save a lot of time for designers when they do their work.

MacBook Pro Laptop

The MacBook Pro Laptop comes in 13, 15 and 17 inch sizes. It has high-performance NVDIA graphics and LED backlit display which makes editing graphics easier and clearer. This latest model has battery power that lasts up to 8 hours (on 17-inch version). It is powered by the Intel Core 2 Duo processor.

Dell Studio XPS Desktop

The Dell Studio XPS Desktop features the Intel Core i5 and i7 processors. If you plan on working with intensive video or 3D editing, you can have an upgrade to the 16GB Dual Channel DDR3 SDRAM. But its base 3GB memory will enable you to edit photos, create vector or raster designs with ease. Its high-definition ATI graphics card creates clear, precise and flawless graphics - just what a graphic designer needs.

Toshiba Qosmio Laptop

The Toshiba Qosimo is an affordable solution to your graphic design needs. It is powered by either the Intel Core i7 or i5 processor making it easier to create flawless graphics. It has a high-end NVIDIA GeForce graphics card, which ensures that you can clearly see every pixel and frame that you edit. It has a 6GB DDR3 1066MHz memory and a 1GB GDDR5 discrete graphics memory.

HP Pavilion Elite Desktop

The HP Pavilion Elite Desktop is an affordable computer. It is powered by either an AMD Athlon or an Intel Core processor that ranges from an X4 630 quad-core (Athlon) to an i7-980X six-core Extreme Edition (Intel). All HP Pavilion Elite Desktop computers come with genuine 64-bit Windows 7 for the latest technology. Memory ranges from 4GB up to 9GB which guarantees smooth and effortless run of the high-end graphics that you use.

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Dec 29, 2011

Computer Forensics, Data Recovery and E-Discovery Differ

What's the difference between data recovery, computer forensics and e-discovery?

All three fields deal with data, and specifically digital data. It's all about electrons in the form of zeroes and ones. And it's all about taking information that may be hard to find and presenting it in a readable fashion. But even though there is overlap, the skill sets require different tools, different specializations, different work environments, and different ways of looking at things.

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Data recovery generally involves things that are broken - whether hardware or software. When a computer crashes and won't start back up, when an external hard disk, thumb drive, or memory card becomes unreadable, then data recovery may be required. Frequently, a digital device that needs its data recovered will have electronic damage, physical damage, or a combination of the two. If such is the case, hardware repair will be a big part of the data recovery process. This may involve repairing the drive's electronics, or even replacing the stack of read / write heads inside the sealed portion of the disk drive.

Computer Forensics, Data Recovery and E-Discovery Differ

If the hardware is intact, the file or partition structure is likely to be damaged. Some data recovery tools will attempt to repair partition or file structure, while others look into the damaged file structure and attempt to pull files out. Partitions and directories may be rebuilt manually with a hex editor as well, but given the size of modern disk drives and the amount of data on them, this tends to be impractical.

By and large, data recovery is a kind of "macro" process. The end result tends to be a large population of data saved without as much attention to the individual files. Data recovery jobs are often individual disk drives or other digital media that have damaged hardware or software. There are no particular industry-wide accepted standards in data recovery.

Electronic discovery usually deals with hardware and software that is intact. Challenges in e-discovery include "de-duping." A search may be conducted through a very large volume of existing or backed-up emails and documents.

Due to the nature of computers and of email, there are likely to be very many identical duplicates ("dupes") of various documents and emails. E-discovery tools are designed to winnow down what might otherwise be an unmanageable torrent of data to a manageable size by indexing and removal of duplicates, also known as de-duping.

E-discovery often deals with large quantities of data from undamaged hardware, and procedures fall under the Federal Rules of Civil Procedure ("FRCP").

Computer forensics has aspects of both e-discovery and data recovery.

In computer forensics, the forensic examiner (CFE) searches for and through both existing and previously existing, or deleted data. Doing this kind of e-discovery, a forensics expert sometimes deals with damaged hardware, although this is relatively uncommon. Data recovery procedures may be brought into play to recover deleted files intact. But frequently the CFE must deal with purposeful attempts to hide or destroy data that require skills outside those found in the data recovery industry.

When dealing with email, the CFE is often searching unallocated space for ambient data - data that no longer exists as a file readable to the user. This can include searching for specific words or phrases ("keyword searches") or email addresses in unallocated space. This can include hacking Outlook files to find deleted email. This can include looking into cache or log files, or even into Internet history files for remnants of data. And of course, it often includes a search through active files for the same data.

Practices are similar when looking for specific documents supportive of a case or charge. Keyword searches are performed both on active or visible documents, and on ambient data. Keyword searches must be designed carefully. In one such case, The Schlinger Foundation v Blair Smith, et al the author, computer forensics expert Steve Burgess uncovered more than one million keyword "hits" on two disk drives.

Finally, the computer forensics expert is also often called upon to testify as an expert witness in deposition or in court. As a result, the CFE's methods and procedures may be put under a microscope and the expert may be called upon to explain and defend his or her results and actions. A CFE who is also an expert witness may have to defend things said in court or in writings published elsewhere.

Most often, data recovery deals with one disk drive, or the data from one system. The data recovery house will have its own standards and procedures and works on reputation, not certification. Electronic discovery frequently deals with data from large numbers of systems, or from servers with that may contain many user accounts. E-discovery methods are based on proven software and hardware combinations and are best planned for far in advance (although lack of pre-planning is very common). Computer forensics may deal with one or many systems or devices, may be fairly fluid in the scope of demands and requests made, often deals with missing data, and must be defensible - and defended - in court.

EZ

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Dec 15, 2011

Replacing Computer Hard Drives

Have you run out of storage space in your computer?

Perhaps it's time for a bigger hard drive!

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In this article you'll find out how to replace your current hard drive.

Replacing Computer Hard Drives

In actuality the computer wouldn't even run without a hard disk drive, its BIOS or basic operating system would be looking for it the minute you turned it on.

The hard disk drive is a sealed unit with multiple rigid magnetic disks inside.
It is sealed to prevent any foreign particles from entering inside it, which would render the drive useless.
Hard disk drives come in many sizes, anywhere from a few hundred megabytes to several gigabytes.

Now that's what I call a memory bank!

I wish I had one of these babies in my head, then I'd never forget anything again.

Obviously you'd want to get a large enough hard drive for your needs.

Like memory modules, the bigger the better.

But remember, the larger the hard drive the more it will cost you.

There are currently 3 types of HARD DRIVES:

IDE (Integrated Drive Electronics).

EIDE (Enhanced Integrated Drive Electronics) and,

SCSI (Small Computer Serial Interface) - A SCSI expansion card is needed.

The most popular being the EIDE drive.

Most current motherboards support EIDE drives, but check your motherboard owner's manual to be sure.

On the back of the hard drive you'll notice 2 connectors.

The smaller one is to supply DC power to the drive.

The larger one is used for data communications to and from the computer.

You'll also notice there are jumpers, much like your motherboard and expansion boards.

If this is the only hard drive in your system you'll want to set it as your master drive.

Most of the time the drive will be already configured at the factory for master drive # 1.

Connect one of the remaining power leads from the power supply to the DC power connector on the drive.

The power connector is keyed so it will only fit one way.

Connect the larger flat ribbon cable to the motherboard and to the data connector on the drive, making sure the dotted colored edge goes to pin # 1 (usually near the power connector).

Slide the drive into one of the bays and secure it with 4 Phillips screws using a non-magnetic screwdriver only!

To remove or replace the drive, simply reverse the procedure.

If You Find This Article Useful, Please Link To It!

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Dec 13, 2011

New Computer - Old Email, or How to Back up and Transfer Your Email

If you have a brand new computer, or are thinking about buying one in the near future, one of the things that you will need to consider is how to transfer your emails from the old system to the new system.

At least once a week in my job as a help desk analyst, I am helping a customer set up Outlook Express or Outlook (there are other email clients that are used, but these two are the most popular) on their new computer. Once we are finished with the setup and they open it up to the Inbox the question is asked "where are my old emails?" The simple answer; "on your old computer". Then of course the follow up question is; "how do I get them to the new computer?"

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Easy or Hard

New Computer - Old Email, or How to Back up and Transfer Your Email

The easiest way to do this is to back them up to an external hard drive or a compact disc before you make the switch to the new computer and then copy them over to the new computer in the exact same directory. The harder way is in the case of a crashed computer or the inability to access the files normally. I cover a bit of that in another article called 'Got Backups?' which you can find at my website.

Outlook Express

With Outlook Express your emails/email folders are stored on your hard drive in a directory that is buried way down deep in the Operating System. Instead of me giving you the full path to get there, it's easiest if you have Outlook Express open, click on Tools then Options.

Copy/Paste

Once you are here, click on the Maintenance tab and then click on the Store Folder button. This will pop another window with the location of your emails. Using your mouse, highlight the path and then right click and copy it.

You will then click on the Start button, then click Run, and then right click in the Open box and Paste the path. Click Ok.

This will open another window with your email files. Unless you have added other folders to your Outlook Express, the default folders will be here with a .dbx extension (Folders, Inbox, Sent Items, Deleted Items, and Drafts).

Backup

If you are going to write these files to a CD, you can burn them at this time by using your favorite burning software (providing that you have a CD burner installed in your computer).

To copy them to an external hard drive, you must now connect that device to your computer, create a folder on that drive (I usually call it Email Backups), copy the files from the old computer then paste the files into the Email Backups folder.

Import

Once you have the files copied to the CD or external drive, then you will go to the new installation of Outlook Express and import the messages. It would be nice if you could just copy them to the new OE and be done, but Microsoft doesn't like you to do it that way.

Open up OE and then click on File, Import, Messages. This will open a new window called Outlook Express Import. Choose Microsoft Outlook Express 6 then click Next. Click in the circle that says 'Import mail from an OE6 store directory'. Click OK. Then click 'Browse' and navigate to and select the directory you have saved them to. Click OK. The next window will give you a list of all of the email folders you have previously saved. Keep 'All folders' selected and click Next.

This will begin the process of importing all of your 'old' emails into your 'new' Outlook Express. Once it has finished you will have all of your old emails back! Cool, huh?

Outlook

The procedure to save and then import your emails in Outlook is similar, but different.

To start with, Outlook uses a file extension called pst, or Personal Folder File. Don't ask me why it's called that. Call Bill Gates and ask him.

Export

You will start on the old computer and with Outlook open, click on File, then 'Import and Export'. This opens the Import and Export Wizard. Choose 'Export to a file' then click Next. Choose 'Personal Folder File' here and then click Next. In the Export Personal Folders dialogue box you have your choice of what you want to do. The easiest is to keep the default choice of just the inbox, but if you want your sent items and all the other folders, choose the top item (Personal Folders) and then choose the 'Include subfolders' option and then click Next.

The next window will have a default location listed
(usually C:Documents and Settings'your computer name'Local SettingsApplication DataMicrosoftOutlookbackup.pst). I would suggest following the same procedure as for OE (see above). Then click 'Finish' and let it do it's thing.
Once you have your pst files backed up, move to the new computer and the import process will again be similar to OE.

Connect your external hard drive to your computer or insert the CD into the drive.

Import

Open Outlook, click on File, then Import and Export. In the Import and Export Wizard, this time choose 'Import from another program or file' then click Next. In the 'Import a File' window, scroll down and select Personal Folder File (.pst) and then click Next.

In the 'Import Personal Folders' window, click the Browse button and navigate out to the location of your backed up pst file, choose it and then click Next. Click 'Finish' and it will import all of your messages.

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