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Q: What is the energy of a photon emitted with a wavelength of frequency 654 nm?
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How do you find the energy of a photon?

You need to know the photon's frequency or wavelength. If you know the wavelength, divide the speed of light by the photon's wavelength to find the frequency. Once you have the photon's frequency, multiply that by Planck's Konstant. The product is the photon's energy.


Which is more energetic a red photon or a blue photon?

The energy of a photon is inversely propotional to its wavelength. The wavelength of a blue photon is less than that of a red photon. That makes the blue photon more energetic. Or how about this? The energy of a photon is directly proportional to its frequency. The frequency of a blue photon is greater than that of a red photon. That makes the blue photon more energetic. The wavelength of a photon is inversely proportional to its frequency. The the longer the wavelength, the lower the frequency. The shorter the wavelength, the higher the frequency.


How are the wavelenght and energy of a photon related?

The energy of a photon is directly proportional to the frequency. Since the frequency is inversely proportional to the wavelength, the energy, too, is inversely proportional to the wavelength.


What is the relationship between wavelength of light and the quantity of energy per photon?

The energy per photon is directly proportional to the frequency; the frequency is inversely proportional to the wavelength (since frequency x wavelength = speed of light, which is constant); thus, the energy per photon is inversely proportional to the wavelength.


What is the wavelength of a photon whose energy is twice that of a photon with a 580 nm wavelength?

Twice the energy means twice the frequency, and therefore half the wavelength.

Related questions

How do you find the energy of a photon?

You need to know the photon's frequency or wavelength. If you know the wavelength, divide the speed of light by the photon's wavelength to find the frequency. Once you have the photon's frequency, multiply that by Planck's Konstant. The product is the photon's energy.


Which is more energetic a red photon or a blue photon?

The energy of a photon is inversely propotional to its wavelength. The wavelength of a blue photon is less than that of a red photon. That makes the blue photon more energetic. Or how about this? The energy of a photon is directly proportional to its frequency. The frequency of a blue photon is greater than that of a red photon. That makes the blue photon more energetic. The wavelength of a photon is inversely proportional to its frequency. The the longer the wavelength, the lower the frequency. The shorter the wavelength, the higher the frequency.


How are the wavelenght and energy of a photon related?

The energy of a photon is directly proportional to the frequency. Since the frequency is inversely proportional to the wavelength, the energy, too, is inversely proportional to the wavelength.


Photon energy and frequency increases as the wavelength of light?

The energy increases as the frequency increases.The frequency decreases as the wavelength increases.So, the energy decreases as the wavelength increases.


What is the relationship between wavelength of light and the quantity of energy per photon?

The energy per photon is directly proportional to the frequency; the frequency is inversely proportional to the wavelength (since frequency x wavelength = speed of light, which is constant); thus, the energy per photon is inversely proportional to the wavelength.


What is the wavelength of a photon whose energy is twice that of a photon with a 580 nm wavelength?

Twice the energy means twice the frequency, and therefore half the wavelength.


What is the energy of a photon emitted with a wavelength of NM?

4.44 10-19 j


What is the frequency and energy of a photon with a wavelength of 488.3 nm?

89


When an electron falls from a higher energy level to a lower energy energy level how is the energy released?

The energy is released as electromagetic energy and each transition in each atom has its own wavelength for the light emitted.


What is the energy J of photon with a wavelength of 601nm?

for a photon energy= Planks Constant * frequency and frequency= speed of light/wavelength so E= hc/(wavelength) h= 6.63E-34 J/s c= 3E8 m/s Plug n' Chug


How is the energy of a photon related to its frequency and wavelength?

wavelength : wavelength is the distance from crest of one wave to the crest of next frequency : the number of waves that passes a given point in one second energy : the amplitude or intensity of a wave energy and frequency is directly proportional to each other when energy is high frequency is also high wavelength and frequency or energy is inversly proportional to each other when wavelength is high frequency or energy is low


What increases As the wavelength of electromagnetic radiation?

Remember that for any wave, wavelength x frequency = speed (of the wave). So, as the wavelength increases, the frequency decreases. Also, since the energy of a photon is proportional to the frequency, the energy will decrease as well in this case.