Tuesday, August 23, 2016

How To Determine If Your Computer RAM Memory Is Faulty And If It Can Be Upgraded Using Linux Ubuntu?



I as of late saw my PC execution lessened, when I run numerous projects in the meantime. Keeping in mind the end goal to decide the issue, I ran the "top" summon from the terminal window in Linux Ubuntu 16.04. This charge records every one of the procedures running in realtime with insights about every one of the assets utilized.


When I inspected the use of the Central Processing Unit, Drive recollections, and the RAM memory, I understood the RAM being expended near one Hundred percent limit. There may have been different issues; be that as it may, this issue was clear and it required prompt consideration.

I am not sure in the event that you have encountered this issue, but rather the answer for this issue can be ordered in three classifications:

1 - Start by testing your memory to guarantee that no blunder found, after the test has been finished.

2 - Start running less projects in the meantime and keep "top" hurrying to screen the assets use.

3 - Try to overhaul your memory to a more elevated amount, so you will have the capacity to run the same number of projects.

Presently, you ought to begin actualizing the above three cases. How about we assume that you ran the memory test and found no mistakes. That was the situation when I ran it on my PC.

Likewise, we'll assume that you will need to continue running every one of the projects. That will lead you to step three, where you choose to redesign your RAM.

With a specific end goal to redesign your RAM, you need to figure out whether the framework can be updated. The following is the technique I used to decide the memory module sort, the space number, and status of the openings:

Give us a chance to assume that, you are running Linux Ubuntu 16.04, since this technique was taken a stab at utilizing this working framework.

Presently, reboot the framework, and select the alternative that showcases, "memory test 86 5.01" utility project. Now, the framework will run the memory testing program. Amid the test, you can click, "c" for the arrangement alternative.

When you incite the setup alternative, the framework will show a dark screen with choices numbered, 1 through 7. One of the alternatives is for the memory data. For my situation, the RAM is a DIMM sort, which stand for Dual-inline-Memory-Module. This portrayal can change starting with one framework then onto the next.

I chose the DIMM data and the framework showed a rundown of data that appeared:

1 - The quantity of openings.

2 - The status of each opening.

3 - The memory size where it was introduced.

4 - The depiction and particulars of the introduced unit.

My framework had 2 Gigabits in one opening, and the other three demonstrated the number, Zero, that inferred I have three spaces that can be redesigned. In this way, I can include 2, 4, or 6 Gigabits more limit. That will bring about a PC that has a RAM of 4, 6, or 8 Gigabits relying upon what I longing to introduce.

In synopsis, before you take your PC to a repair shop, or dismantle it yourself, you ought to run the above test to figure out whether it can be overhauled or not. Now, you will choose to introduce the memory yourself or convey it to a repair shop.

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