Except the sun isn’t yellow, it’s white with a slight bias towards green.
Want to check, put something white outside, it looks white, not yellow.
The reason the sun appears to be yellow is the same reason that the sky appears to be blue.
Blue light is scattered more by the air in the atmosphere than other wavelengths. Remove blue from white light and you get yellow. So the light coming from the sun that isn’t scattered and dispersed through the sky (making the sky look blue) is yellow.
Neither water is blue
They take us for absolute fools
That’s why I never developed super powers.
lemmy poster here. both of these people are annoying, unfunny fucks.
bet you didn’t see that one coming!
btw i have a masters degree in internet posting.
Lemme guess, reddit transplant?
Isn’t everybody?
“Incandescent rage” is one of those phrases I have pocketed for a future conversation.
Purple leaves are a thing.
That’s from plants that get their air mostly from the shade and sunsets, so obviously they’d be less yellow and more dark and red.
I know this is a joke, but to be fair: the scientific consensus (now) is that the purple pigmentation acts as a sort of sunscreen against too much sunlight.
Whinging about a fact being wrong without providing a correction is worse than the one being wrong.
The thing is it’s kinda right, just lacking detail
Cab you help explain it? I thought that the sky was blue because it reflects the ocean and because of rayleigh scattering, but do either of these affect the color of plants?
Wow, wrong, Do some research, but I will help if needed (seriously, DM me or whatever) but why not do it publicly, You’re asking the right questions and that counts for a lot.
Reflecting the ocean is not a thing, but rayleigh scattering is a real reason for blue sky.
Science rocks.
This is kinda away from the other replies to your comment. But I took that meme as saying plants get CO2 from the air (blue - scattering) and use sunlight (yellow - not really but meh) to produce many things with it, including chlorophyll which is the green pigment in plants.
You’ve got it partially backwards. The sky is blue because of Rayleigh scattering, but it doesn’t reflect the ocean; the ocean is blue because it reflects the sky.
Incidentally, I’ve heard it said (I think it was xkcd) that we use the term “Rayleigh scattering” because it sounds silly to say that the air is blue (via the mechanism of Rayleigh scattering); so maybe that’s part of it?
The bit about the ocean being blue because it reflects the sky is unfortunately mostly wrong. Water is slightly more blue than ozone, so the more of it there is (big water in big ocean) the more blue it will look. The fact that it’s also reflecting the blue sky adds to the color, but on a cloudy day the ocean is still blue.
I’m about a kilometer from the ocean right now (I’m standing in front of the window through which I can see it), and it’s a partly cloudy day. When the sky is clear (as it was five minutes ago), the ocean is a rich, saturated blue or even teal. When it’s cloudy (as it is currently), I can see that it’s a cool gray color. I might call it a very dark, desaturated cyan at most. So from my observation it has to be the opposite: the relative blueness of the ozone and the water must be the less dependent factor, and the color of the sky the more dependent one.
It’s tricky, though. I guess I might be in a place with weird salinity or plankton or something.
Plants are green because they absorb all other wavelengths of light. And bounce the green into your eye. In actual fact, color only exists in your brain as a way to understand the world around us. Our eyes are just sensors that detect light. And color is how we process it. We could have evolved into understanding it in different ways too, like smell. Therefore color doesnt even exist in the natural world. Green is just an illusion of our mind.
The crazy part is the exact science behind why plants reflect green specifically is still debated. One theory is that, because much of the sun’s energy is released on that wavelength, controlling for it specifically allows the plant to better manage energy fluctuations (highly simplified but you get the idea)
longer explanation and source
Plants are green specifically because the red and blue wavelengths of light are useful for breaking specific chemical bonds necessary for photosynthesis and as such are readily absorbed by the plant. The plant makes efficient use of the energy provided by only absorbing the wavelengths necessary for its processes. However, plants still absorb 90% of green light and green light holds the highest proportion of the energy radiated by the sun.
To be more clear, green light has too much energy. When plants absorb light it first enters a protein mesh containing pigments such as chlorophyll that function like an antenna or receiver for a range of wavelengths. The pigments then transfer the energy to a “reaction center” where it turns this electromagnetic energy into chemical energy (photosynthesis). This process is exceedingly efficient; almost all of the absorbed energy is converted into electrons the plants can use. However, this protein mesh antenna is not solid and is constantly moving. These movements affect how energy is absorbed and how it flows through the pigments. Think of diffraction in water. Fluctuation in the intensity of light can create noise in this process; a quick brush of shade or sudden increase of light intensity can decrease the efficiency of photosynthesis. For plants and really everything that lives, a steady input and output of energy is desirable. Not enough electrons making it to the reaction center causes energy failure while too much will cause general overcharging effects that can damage tissue. When the noise of this system fluctuates it makes it difficult for the plant to self regulate it’s energy flow and could cause the plant to kill it’s own tissue or essentially starve. So essentially, while absorbing all green light would provide the plant with more energy, it’s not capable of handling this energy so plants evolved to limit their intake of green light.
However, this is not to say that green lights ability to efficiently evaporate water is not a factor in this evolutionary development, hell it’s probable that these two things are heavily related. Green light might evaporate water so well because of some combination of its relatively high energy mixed with the size of its wavelength interacting with the hydrogen bonds between water molecules in a more efficient manner than other wavelengths of electromagnetic radiation.
source for those interested
this is a copy pasted comment from this post and as such not every part of it has context
So why are some plants purple?
Wish I knew lol
Which curiously enough, can also photosynthesize, and more readily absorb energy from green light than chlorophyll!
Makes me wonder what could be achieved with some careful engineering…
Very interesting, thanks for the info!









