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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.
without energy there cannot be a wavelength.
The shorter the wavelength of a wave, the higher its energy.
a shorter wavelength means lower energy. A shorter wavelength means high energy
A wavelength carry energy. Strictly speaking, a wave carries energy. A wavelength is a property of a wave.
510 nm
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.
If you mean wavelength, 510 nanometres (510nm)
without energy there cannot be a wavelength.
The shorter the wavelength of a wave, the higher its energy.
Energy and wavelength are related by Planck's Energy formula E = hf = hc/w where w is the wavelength.
a shorter wavelength means lower energy. A shorter wavelength means high energy
2.91 metres.
A wavelength carry energy. Strictly speaking, a wave carries energy. A wavelength is a property of a wave.
As the wavelength decreases, the energy increases.
Frequency and energy decrease as wavelength increases.
The greater the energy the shorter the wavelength.