Each photon of blue light has more energy than a photon of any
other color, because the blue ones have the highest frequency.
Violet (purple) is the highest energy color in the visible spectrum. It has a wavelength of about 400nm (4x10-8m), the lowest of all visible light.
Violet light has the highest energy.
Yes, the brightest color in the visible spectrum (violet) does have the highest energy level due to its shorter wavelength. Violet light has the highest frequency and carries more energy per photon compared to other colors in the visible spectrum.
Photons with higher energy correspond to electromagnetic radiation with higher frequency/shorter wavelength. In the visible band, the color with the highest frequency is the last one you can see on the VIOLET end of the spectrum.
The color violet corresponds to the largest energy change in the visible spectrum. It has the shortest wavelength and highest frequency, resulting in higher energy compared to other visible colors like red or blue.
Violet (purple) is the highest energy color in the visible spectrum. It has a wavelength of about 400nm (4x10-8m), the lowest of all visible light.
Blue photons contain the highest energy among visible light photons. The energy of a photon is directly proportional to its frequency, and blue light has a higher frequency than other colors in the visible spectrum.
Violet light has the highest energy.
The color violet in the visible light spectrum has the highest frequency and most energy due to its short wavelength, which corresponds to higher energy photons.
Yes, the brightest color in the visible spectrum (violet) does have the highest energy level due to its shorter wavelength. Violet light has the highest frequency and carries more energy per photon compared to other colors in the visible spectrum.
Photons with higher energy correspond to electromagnetic radiation with higher frequency/shorter wavelength. In the visible band, the color with the highest frequency is the last one you can see on the VIOLET end of the spectrum.
The color violet corresponds to the largest energy change in the visible spectrum. It has the shortest wavelength and highest frequency, resulting in higher energy compared to other visible colors like red or blue.
Red light.
The color violet has the highest energy among the visible colors. It has the shortest wavelength and the highest frequency in the visible spectrum.
Red
A photon's energy is directly proportional to its frequency (inversely proportional to its wavelength).In any given interval of the spectrum, the highest frequency (shortest wavelength) carries the most energy.For visible light, that corresponds to the violet end of the 'rainbow'. The last color your eyes can perceiveat that end is the color with the most energy per photon.
Violet light, which is at the top end of the visible light spectrum, has the highest energy among the colors of the rainbow.