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Photon disintegration can occur through the photoelectric effect, Compton scattering, and pair production. In the photoelectric effect, a photon is absorbed by an atom, ejecting an electron. Compton scattering involves a photon colliding with an electron, causing the photon to lose energy and change direction. Pair production occurs when a photon interacts with the nucleus of an atom, producing an electron-positron pair.

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What is the speed of a photon in a vacuum?

The speed of a photon in a vacuum is approximately 299,792 kilometers per second, which is the fastest speed possible in the universe.


Is it possible for an atom of element X to absorb two photons and then emit one photon Can you explain the process behind this phenomenon?

Yes, it is possible for an atom of element X to absorb two photons and then emit one photon through a process called two-photon absorption followed by single-photon emission. When an atom absorbs two photons simultaneously, it can reach an excited state with higher energy. This excited state can then decay back to a lower energy state by emitting a single photon. This phenomenon is known as two-photon absorption followed by single-photon emission and is a rare but possible occurrence in certain atomic systems.


Could an atom emit one photon of blue light after absorbing only one photon of red light?

No, it could not. A blue photon carries more energy than a red photon, since the blue photon's frequency is higher. That means one red photon wouldn't deliver enough energy to the atom to give it the energy to emit a blue photon.


What is quantum of light energy called?

The quantum of light energy is called a photon. It is the smallest possible discrete unit of light.


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.

Related Questions

Is it possible to have 3 modes?

yes


Which is the lowest possible energy state for a photon?

The lowest possible energy state for a photon is when it has no energy, which corresponds to a frequency of zero.


What is the speed of a photon in a vacuum?

The speed of a photon in a vacuum is approximately 299,792 kilometers per second, which is the fastest speed possible in the universe.


Is it possible for an atom of element X to absorb two photons and then emit one photon Can you explain the process behind this phenomenon?

Yes, it is possible for an atom of element X to absorb two photons and then emit one photon through a process called two-photon absorption followed by single-photon emission. When an atom absorbs two photons simultaneously, it can reach an excited state with higher energy. This excited state can then decay back to a lower energy state by emitting a single photon. This phenomenon is known as two-photon absorption followed by single-photon emission and is a rare but possible occurrence in certain atomic systems.


Can a substance be radioactive without a nuclear reaction taking place?

Yes, it is possible; disintegration is not considered a nuclear reaction.


Is it possible for an atom to absorb or emit 1 ½ photons?

No, because there is no such thing as half a photon.


What is a possible result of an atom that absorbs sufficient energy?

The atom may emit a photon.


Could an atom emit one photon of blue light after absorbing only one photon of red light?

No, it could not. A blue photon carries more energy than a red photon, since the blue photon's frequency is higher. That means one red photon wouldn't deliver enough energy to the atom to give it the energy to emit a blue photon.


When was The Disintegration Machine created?

The Disintegration Machine was created in 1929.


When was The Disintegration Loops created?

The Disintegration Loops was created in 1982.


What is a quntum?

a quntum is the smallest amount of energy possible if it is a quntum of light its an electromagnetic radiation (photon)


When an color photon is emitted from some molecule that means molecule jumped from some energy level to lower and emitted it or just one of its atom's electron did?

Either scenario is possible. Some electrons are involved in covalent bonds and have an emission spectrum that depicts that extended commitment. Some electrons are more tightly involved with individual atoms and their emissions are of higher energies.