it would appear black . "i no because i tryed it "
When a green apple appears black under a red light, it is because the red light does not contain wavelengths that correspond to the green color of the apple. The red light is absorbed by the apple, causing it to appear black as there is no green light being reflected off the surface to be perceived by our eyes. Each color of light corresponds to a specific wavelength, and when the light's wavelength does not match the object's color, the object will appear different.
A purely green apple would look black under purely red light. If the apple were not purely green, it would look dark red. If the light were not purely red, the apple would look dark green. This is because red light does not reflect off purely green objects, and it is the reflected light which we see.
Since the apple is green, it would absorb any light that is not the same color as the apple. In this instance, the apple would appear very dark or even black since there is no green in the red light you are shining on the apple. A popular science experiment involves a shoe box, a piece of colored plastic or glass, a few objects (such as the apple), and a flashlight. If a red apple is being used with a red filter, the apple would appear to be a bright red since the apple is also red. The red filter allows the red color being reflected off the apple to pass through. Switch the filter to a green one, and the apple appears black since the filter effectively filters out all colors except green.
The green apple absorbs most colors of light but reflects green light. When white light shines on the apple, its surface absorbs all colors except green, which gets reflected back to our eyes, making the apple appear green.
White light minus green light would appear as a purplish color. This is because when green light is removed from white light, the remaining color components combine to create a mix of blue and red light, which results in a purplish hue.
When a green apple appears black under a red light, it is because the red light does not contain wavelengths that correspond to the green color of the apple. The red light is absorbed by the apple, causing it to appear black as there is no green light being reflected off the surface to be perceived by our eyes. Each color of light corresponds to a specific wavelength, and when the light's wavelength does not match the object's color, the object will appear different.
A green apple appears green under white light because its surface absorbs all colors of light except green. Green light is reflected off the apple's surface and then detected by our eyes, making it appear green.
the same color it is in the light. objects appear the color that they are because they absorb all colors of light except the one that it appears as. it relects that color and your brain sees it as that. thus, if you have a red apple and a green light on it, it would appear to be black or just really dark. because there is no red light for it to reflect and it merely absorbs the green light. so an apple is the same color no matter what. its just the diffrent affects of light that make it seem different colors.
A purely green apple would look black under purely red light. If the apple were not purely green, it would look dark red. If the light were not purely red, the apple would look dark green. This is because red light does not reflect off purely green objects, and it is the reflected light which we see.
Since the apple is green, it would absorb any light that is not the same color as the apple. In this instance, the apple would appear very dark or even black since there is no green in the red light you are shining on the apple. A popular science experiment involves a shoe box, a piece of colored plastic or glass, a few objects (such as the apple), and a flashlight. If a red apple is being used with a red filter, the apple would appear to be a bright red since the apple is also red. The red filter allows the red color being reflected off the apple to pass through. Switch the filter to a green one, and the apple appears black since the filter effectively filters out all colors except green.
Black, or nearly so. The apple reflects only green light, the red filter only lets red light through, so nothing reaches the eye.
Green.
The green apple absorbs most colors of light but reflects green light. When white light shines on the apple, its surface absorbs all colors except green, which gets reflected back to our eyes, making the apple appear green.
It will be black because there may not be any green light reflecting the green apple so if theres no light then it will become black
Green.
White light minus green light would appear as a purplish color. This is because when green light is removed from white light, the remaining color components combine to create a mix of blue and red light, which results in a purplish hue.
Apples are green because, apple fruit colors of red and yellow are due to anthocyanins. The green would probably be chlorophyll. Anthocyanins are one of the main pigments responsible for flower, fruit and leaf colors...