Excitation of electrons in atoms

In summary, when an electron is bombarded by another electron or photon, it may jump to a higher energy level if the incoming particle has enough energy. The electron may also emit smaller energy photons as it transitions back to the lowest energy level. The specific process that occurs depends on the energy levels involved.
  • #1
deadscientist
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I'm curious, when an electron is bombarded by another electron or photon does the electron even jump at all if the incoming particle does not have the minimum energy to make it jump to the second orbital. That is do the electrons have some sort of knowledge before the collision occurs and know whether or not to transition energy levels? Also what would happen if the incoming particle had sufficient energy to knock an electron to (for arguments sake) the fifth orbital, would the photon emitted upon deexcitation have the energy of the difference in potential energy from the first and fifth orbital or would the electron emit a smaller energy photon from each level until it reached the first?
 
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  • #2
Sorry for the length of the question ha..
 
  • #3
deadscientist said:
Also what would happen if the incoming particle had sufficient energy to knock an electron to (for arguments sake) the fifth orbital, would the photon emitted upon deexcitation have the energy of the difference in potential energy from the first and fifth orbital or would the electron emit a smaller energy photon from each level until it reached the first?
Both processes are possible. The relative probabilities of the processes are dependent on the properties of the energy levels (mean lifetime etc.).
 

1. What is excitation of electrons in atoms?

Excitation of electrons in atoms refers to the process of an electron being promoted from its ground state to a higher energy state by absorbing energy. This can occur through various mechanisms such as absorption of light or collisions with other particles.

2. What causes electrons to become excited?

Electrons become excited when they absorb energy. This energy can come from various sources such as heat, light, or collisions with other particles. The amount of energy needed to excite an electron depends on the specific atom and its energy levels.

3. What happens to an excited electron?

An excited electron will eventually return to its ground state by releasing the absorbed energy in the form of light or heat. This process is known as relaxation. The specific wavelength of light released depends on the energy difference between the excited state and ground state of the electron.

4. How does excitation of electrons contribute to the formation of spectral lines?

When an electron is excited and then returns to its ground state, it releases energy in the form of light. This light has a specific wavelength corresponding to the energy difference between the excited state and ground state of the electron. This results in the formation of spectral lines, which can be used to identify the elements present in a sample.

5. How is excitation of electrons in atoms used in everyday life?

Excitation of electrons plays a crucial role in various everyday technologies such as LEDs, lasers, and fluorescent lights. These technologies use the energy released during the relaxation of excited electrons to produce light. Excitation of electrons is also important in fields such as spectroscopy, where it is used to analyze the composition of materials.

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