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Question:

What determines how sharp and crisp a monitor is like LCD or LED?

Also the video card and monitor should it be a 24-bit or 32-bit color depth ?The human eye how many different types of colors can we see 16 million colors

Answer:

An LCD monitor has a native resolution, a 1920x1080 monitor physically has 1920x1080 groups of cells that can glow red, green and blue to make the different colours. If you drive the monitor with anything other than its native resolution the image will be less distinct. This is especially true where the host is employing tricks to improve the resolution. You probably will see no difference between 24-bit and 32-bit colours. Two swatches of colour adjacent to one another that are one tone different will show a clear dividing line. The same two swatches with a gap between them will look the same. You perception of colour is far worse than you will believe, have a look at the various optical illusions around that show two things that are demonstrably the same colour can look radically different in different contexts. It's also worth noting that mixing red, green and blue together does not produce the entire range of colours the eye can see, only a pretty good approximation. This is most noticeable with so called fluorescent colours, these need special lights or inks to reproduce and cannot generally be printed or reproduced on screen.
the sharpness comes mostly from the resolution settings. Befor you buy a computer monitor check the optimal resolution of it. a higher resolution is sharper. but it also takes more work for the graphic card to display.
What determines the sharpness (crispness) are the pixels. Pixels are the tiny 'dots' on the reveal screen, and each pixel could be addressed with the aid of a programmer and/or the CPU (needed Processing Unit, the brains of the pooter). once you notice numbers like 600 x 800 decision, it skill 800 pixels for the era of on the reveal screen and 600 pixels down on the reveal screen, supplying you with a entire of 480,000 pixels. (little dots that is manipulated with the aid of coding suited. (pc language). while the CPU sees a code for pixels to have a definite coloration, the photographs card takes over the activity leaving the CPU to do different issues, like 'watchin' out fer ya'. in the experience that your photographs card can shelter 32-bit coloration intensity (differences) use it. The human eye can see extra suitable than sixteen million hues, the priority is, the pooter, card, and CPU don't have our eyes and is constrained to numbers (codes) it may shelter. you notice, human beings ARE extra useful at some issues (no longer many). ;-)

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