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The wavelength of violet light is shorter.

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∙ 8y ago

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Does the frequency of the colors of light increase from red to violet?

yes, because the violet has the highest frequency than red


How does the frequency affect the color of light?

The higher the frequency the more towards the "bluer" end of the spectrum one moves. So violet is higher frequency than green which in turn is greater than red.


Does the frequencies of the colors of light increase from red to violet?

Yes, the frequency of light increases from red to violet. Red light has the longest wavelength and lowest frequency, while violet light has the shortest wavelength and highest frequency in the visible spectrum.


Why does violet light has more energy than a red light?

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.


Does the frequencies of the colors of the light increase from red to violet?

yes, because the violet has the highest frequency than red


Is red light higher in frequency than violet light?

no


Is the frequency of a red light higher than a violet light?

No, it is lower.


Which has more energy a photon of red light or photon of violet light?

The violet light has more energy than the red light. Red light is lower on the electromagnetic spectrum, meaning it has a lower frequency (or longer wavelength). You'll recall the colors of the rainbow as red, orange, yellow, etc., and these are the colors going up the frequency spectrum. Photons higher on the spectrum are higher in frequency and energy.


When red light is compared with violet light what happens?

Red light has a longer wavelength and lower frequency compared to violet light. This results in red light having lower energy than violet light. In terms of human perception, red light appears less energetic and more calming compared to the higher energy and stimulating violet light.


Does red or violet have more energy?

Violet has more energy than red. This is because violet light has a shorter wavelength and higher frequency, which corresponds to higher energy according to the electromagnetic spectrum.


How would the wavelength and frequency of a red light compare to the wavelengths and frequencies of green and violet lights?

-- Red light has the lowest frequency of those three. -- Green light has lower frequency than violet light has. -- The wavelength of all light is inversely proportional to its frequency.


What color has the greatest frequency?

In visible light, the color with the greatest frequency is violet. Violet light has a shorter wavelength and higher frequency than other colors in the visible spectrum, such as red, blue, and green.