Yes. A lot more.
UV light has higher frequency, so it has more energy than red light has
Violet light is diffracted more than red light because shorter wavelengths are diffracted more than longer wavelengths.
Violet light has a shorter wavelength and higher frequency than red light. Energy of a photon is directly proportional to its frequency, so violet light has more energy than red light.
Red light travels more slowly in glass than violet light. This is because the speed of light in a medium is inversely proportional to its wavelength, and red light has a longer wavelength compared to violet light.
Light from a red laser will produce more widely spaced fringes of light when passed through a diffraction grating compared to light from a green laser. This is because red light has a longer wavelength than green light, causing it to diffract more.
ROY.G.BIV. Means red,Orange,Yellow,Green,Blue,Indigo,Viloet. It .is the initial light spectrum that makes up white light
There is no such thing as "alture viloet light" in the English language. Maybe French, I dunno. If by this you actually meant "ultraviolet light" (UV) the answer is simple. It is light that has a higher frequency than the "visible light" that we perceive. Black lights use UV light to make certain objects glow.
6 colors: green, blue,orange,red,yellow,and viloet
no red uses more energy
you can get a mareep under viloet city
UV light has higher frequency, so it has more energy than red light has
Violet light is diffracted more than red light because shorter wavelengths are diffracted more than longer wavelengths.
I suppose that the red light is more favorable.
Violet light has a shorter wavelength and higher frequency than red light. Energy of a photon is directly proportional to its frequency, so violet light has more energy than red light.
Red light travels more slowly in glass than violet light. This is because the speed of light in a medium is inversely proportional to its wavelength, and red light has a longer wavelength compared to violet light.
Intensity is independent of the wavelength/frequency.
Light from a red laser will produce more widely spaced fringes of light when passed through a diffraction grating compared to light from a green laser. This is because red light has a longer wavelength than green light, causing it to diffract more.