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The energy of a photon is given by the formula E = hf, where h is Planck's constant (6.626 x 10^-34 J s) and f is the frequency of the photon. So, for a photon with a frequency of 6 x 10^12 Hz, the energy would be approximately 3.98 x 10^-21 Joules.

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How much energy does a photon of frequency 6 multiply 1012 Hz have?

The energy of a photon is given by E = hf, where h is the Planck's constant (6.626 x 10^-34 J·s) and f is the frequency of the photon. Plugging in the values, the energy of a photon with a frequency of 6 x 10^12 Hz is approximately 3.98 x 10^-21 Joules.


How much energy does a photon of frequency 6x10(12) hz have?

The energy of a photon is given by the equation E = hf, where h is Planck's constant (6.626 x 10^-34 J s). Substituting the frequency f = 6 x 10^12 Hz into the equation gives E = (6.626 x 10^-34 J s) x (6 x 10^12 Hz) = 3.98 x 10^-21 J.


How much energy does a photon of frequency 6 and times 1012 Hz have?

The energy of a photon can be calculated using the equation E = hf, where E is the energy, h is Planck's constant (6.626 x 10^-34 J s), and f is the frequency of the photon. Plugging in the values, the energy of a photon with a frequency of 6 x 10^12 Hz would be approximately 3.98 x 10^-21 Joules.


How much energy does a photon of frequency 6 x 1012 Hz have?

The energy of a photon is given by the equation E = hf, where h is Planck's constant (6.626 x 10^-34 J*s) and f is the frequency. Plugging in the values, the energy of a photon with a frequency of 6 x 10^12 Hz would be approximately 3.98 x 10^-21 Joules.


A packet of energy that carries a quantum of energy?

A photon is a packet of energy that carries a quantum of energy. It is an elementary particle that is the quantum of the electromagnetic field, including electromagnetic radiation such as light. The energy of a photon is directly proportional to its frequency and inversely proportional to its wavelength.

Related Questions

How much energy does a photon of frequency 6 multiply 1012 Hz have?

The energy of a photon is given by E = hf, where h is the Planck's constant (6.626 x 10^-34 J·s) and f is the frequency of the photon. Plugging in the values, the energy of a photon with a frequency of 6 x 10^12 Hz is approximately 3.98 x 10^-21 Joules.


How much energy does a photon of frequency 6x10(12) hz have?

The energy of a photon is given by the equation E = hf, where h is Planck's constant (6.626 x 10^-34 J s). Substituting the frequency f = 6 x 10^12 Hz into the equation gives E = (6.626 x 10^-34 J s) x (6 x 10^12 Hz) = 3.98 x 10^-21 J.


How much energy does a photon of frequency 6 and times 1012 Hz have?

The energy of a photon can be calculated using the equation E = hf, where E is the energy, h is Planck's constant (6.626 x 10^-34 J s), and f is the frequency of the photon. Plugging in the values, the energy of a photon with a frequency of 6 x 10^12 Hz would be approximately 3.98 x 10^-21 Joules.


How much energy does a photon of frequency 6 x 1012 Hz have?

The energy of a photon is given by the equation E = hf, where h is Planck's constant (6.626 x 10^-34 J*s) and f is the frequency. Plugging in the values, the energy of a photon with a frequency of 6 x 10^12 Hz would be approximately 3.98 x 10^-21 Joules.


A packet of energy that carries a quantum of energy?

A photon is a packet of energy that carries a quantum of energy. It is an elementary particle that is the quantum of the electromagnetic field, including electromagnetic radiation such as light. The energy of a photon is directly proportional to its frequency and inversely proportional to its wavelength.


The longer the wavelength of light?

The longer the wavelength of light, the smaller its frequency, and the less energy there is for every photon.


Which has more energy an infrared or xray photon?

An X-ray proton. This is so because the x-ray has much higher frequency and shorter waves.


Do microwave photons have more energy than photons of visible light?

A microwave signal at 50 GHz has waves that are 10,000 times as long as a visible signal at yellow (600 nm) has. Therefore the yellow photon carries 10,000 times as much energy as the 50 GHz photon does.


What has more energy a microwave signal or a gamma ray?

The photon (quantum) at gamma frequency has more energy than a photon at microwave frequency has. But you can easily generate a beam of microwaves carrying more energy than, for example, the gamma rays that enter your house from space. Just use a more powerful source of microwaves to generate more photons. No big deal. The one in your kitchen that you use to heat the leftover meatloaf pours out far more energy every second than gamma rays bring into your house, but each microwave photon carries much less energy than a gamma photon does.


How much more energetic is a 720nm wavelength than a 520?

-- I have to assume that the '520' figure is also a wavelength in nm.-- The energy of a photon is proportional to its frequency. That also meansthat the energy is inversely proportional to its wavelength. So the photonwith the greater wavelength has less energy.-- 720/520 = 1.385The shorter-wave photon has 38.5% more energy than the longer-wave one.-- 520/720 = 0.722The longer wave photon has 72.2% as much energy as the shorter-wave one has.


What is the wavelength of a photon that has three times as much energy as that of a photon whose wavelength is 779 nm?

Photon energy is proportional to frequency ==> inversely proportional to wavelength.3 times the energy ==> 1/3 times the wavelength = 779/3 = 2592/3 nm


How much energy is contained in a photon of green light?

The energy of a photon of green light with a wavelength of approximately 520 nanometers is about 2.38 electronvolts.

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