2. Visual snow syndrome: Many had their first experience of visual snow after staring into the screen for too long. People who believe in that is the cause of visual snow would want a screen that does not emit light.
2. Visual snow syndrome: Many had their first experience of visual snow after staring into the screen for too long. People who believe in that is the cause of visual snow would want a screen that does not emit light.
There’s also the spikey spectrum, which looks the same consciously but I’ve seen claims [1] that is messes with our circadian rhythm.
[1] I lack the skill to tell if this is real science or neo-mystic woo.
sudo su -c "echo 200 >/sys/class/backlight/intel_backlight/brightness"
Replace 200 with another number for different brightness.Haven't found a Windows nor MacOS equivalent though.
I've used it a fair bit in conjunction with Redshift to get a screen that's reasonable for reading ebooks in low light.
I'd buy an e-ink laptop tomorrow if there was one.
How so? You can set any brightness you want to match the environment. Usage under direct sunlight is one edge case e-paper is clearly better at, and any usage with poor environmental lighting is detrimental to your eyes itself, regardless of technology.
I'm really sceptical about the entire "E Ink is better for your eyes" thing until I see some serious studies. People managed to ruin their eyesight centuries before computer screens. There's just too many factors at play here, from genetics to typography.
https://www.notebookcheck.net/Why-Pulse-Width-Modulation-PWM...
It seems to be well known that it for low frequency PWM it causes headaches for some people, so I would expect that there is at least some research in that direction. That said, it seems to only be a problem for few people and only for very low frequencies.
I know its not scientifically measuring nits/lumens etc but stare into even a low wattage (15w etc) light bulb for a few min and see how it leaves you feeling...seeing spots etc. Then stare at a newspaper or book or E-Reader under a 250w lightbulb or even brighter sunlight outside...and notice how you do NOT have that same problem. Even with a much brighter light source there is something different about how/how much actually enters your eye. I'd love an answer as this is a major life problem for me.
If I look at a matte LCD display (glossy doesn't work in this example due to reflection) in bright sunlight there is a narrow window of display brightness where the things are bright enough to be readable but the sunlight overwhelms the "lit" effect and it appears sort of like you would expect color E-ink too...more flat and printed like the display is now reflective rather than backlit..but it's a very narrow sweet spot that's hard to maintain and I cannot seem to replicate well with artificial lighting inside as it takes a lot more than a 60w bulb even directed right at the display and glare starts to become a factor with a more concentrated light source vs ambient, indirect light from outside. Brightness too low and it's unreadable due to contrast, too high and you get the glow again. To me the root problem is the backlighting somehow...possible combined with dithering or other rendering games that cause even static images to be moving as far as the eye is concerned. But it's not a common enough issue for industry to care about, and as with most things, until individuals suffer from something themselves, they often refuse to believe it's an issue for others.
Firstly staring directly at a light source means that you are seeing most the rays directly. The only attenuation you will receive will be scattering from the medium - presumably air which will be low.
Seeing it from a second surface adds more effects - the surface may have absorb some of the light. Any real surface is also not going to have perfect reflectivity (everything from scattering, internal diffraction and destructive interference could occur). In short there will be loads of secondary/tertiary effects causing attenuation. Someone also mentioned polarisation, I also wonder about interaction between reflective surfaces which could cause additional attenuation via interference but the physics of waves has never been a strong point.
The other major factor is the physiology of the eye - we evolved from a world that didn't have abundant light sources and it's hard to know the effect of focusing on a source of light that differs from the ambient profile.
Does it look good with white text on black background ?