i think it is green. Yeah
When a blue shirt is in red light only, it may appear very dark or nearly black because the red light does not contain the wavelengths needed to reflect the blue color of the shirt. Instead, the shirt will absorb most of the red light, causing it to appear dark.
The visible red light has a wavelength of about 650 nm. At sunrise and sunset, red or orange colors are present because the wavelengths associated with these colors are less efficiently scattered by the atmosphere than the shorter wavelength colors (e.g., blue and purple). A large amount of blue and violet light has been removed as a result of scattering and the longwave colors, such as red and orange, are more readily seen.
A cyan stage light would make the red shirt appear black because cyan is the complementary color of red. A yellow stage light would make the blue pants appear black because yellow is the complementary color of blue.
Well, why do you call it a red shirt ? Could it be because it absorbs all colors of light except red, so that when white light shines on it, all colors except red soak into the shirt, and red is the only light left to travel from the shirt to your eye ? If that is so, then what happens if no red light shines on the shirt ? Is there any light left to travel to your eye ? No ? Well then, what color do you see if no light travels from the shirt to your eye ? I hope Socrates would be proud.
It will look red. White light is made up of a spectrum of many colours. The primary colours are red, green and blue. An object (in white light) appears yellow because it reflects red and green light but absorbs blue light. In red light, the same object will simply reflect the red light. Since there is no green light, the object will appear red. (A mixture of red and green gives yellow)
Like a red T-Shirt.
Red lipstick looks unpleasent under yellow light because yellow light absorbs mist of the red color.
When a blue shirt is in red light only, it may appear very dark or nearly black because the red light does not contain the wavelengths needed to reflect the blue color of the shirt. Instead, the shirt will absorb most of the red light, causing it to appear dark.
The visible red light has a wavelength of about 650 nm. At sunrise and sunset, red or orange colors are present because the wavelengths associated with these colors are less efficiently scattered by the atmosphere than the shorter wavelength colors (e.g., blue and purple). A large amount of blue and violet light has been removed as a result of scattering and the longwave colors, such as red and orange, are more readily seen.
A cyan stage light would make the red shirt appear black because cyan is the complementary color of red. A yellow stage light would make the blue pants appear black because yellow is the complementary color of blue.
-- A white shirt is called "white" because any light that hits it, no matter what color,bounces off of it.-- A red filter is called "red" because any light that hits it is absorbed and dies in thefilter, EXCEPT red light, which survives to come out the other side.-- So if there is any red in the light arriving at the filter, then the light that comes out is red.(And if there is no red in the light arriving at the filter, then no light comes out of it at all.)-- Therefore, we can be sure that light shining on the shirt ... if it has been through the filter ...is red light.-- The shirt reflects any light that hits it, so the light that proceeds from the shirt to your eyesis red light.
Well, why do you call it a red shirt ? Could it be because it absorbs all colors of light except red, so that when white light shines on it, all colors except red soak into the shirt, and red is the only light left to travel from the shirt to your eye ? If that is so, then what happens if no red light shines on the shirt ? Is there any light left to travel to your eye ? No ? Well then, what color do you see if no light travels from the shirt to your eye ? I hope Socrates would be proud.
It will look red. White light is made up of a spectrum of many colours. The primary colours are red, green and blue. An object (in white light) appears yellow because it reflects red and green light but absorbs blue light. In red light, the same object will simply reflect the red light. Since there is no green light, the object will appear red. (A mixture of red and green gives yellow)
A green t-shirt will appear darker and less vibrant under a red light due to the way the human eye perceives color. The red light will make the green shirt appear more subdued as the red light will reflect off the green fabric and alter its appearance.
He has a football shaped head. He wears red overalls & a yellow shirt.
When white light strikes a red shirt, the shirt absorbs most of the colors in the light spectrum except for red. The red color is reflected off the shirt's surface, which our eyes perceive. This is why the shirt appears red to us.
A shirt appears red because it reflects red wavelengths from light which falls on it. If it is dark then there is no incident light and so red light for the shirt to reflect to your eyes.