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22 April, 20:29

Electrons returning to the ground state from varying excited states always:

produce the same energy, because they are returning to the same ground state

produce characteristic sets of energies, depending on the differences in energy between the excited states and ground state

vary in energy, even when the energy difference between excited to ground state stays the same

produce equal sized emission bands

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  1. 22 April, 23:14
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    produce characteristic sets of energies, depending on the differences in energy between the excited states and ground state

    Explanation:

    The electron is jumped into higher level and back into lower level by absorbing and releasing the energy.

    The process is called excitation and de-excitation.

    Excitation:

    When the energy is provided to the atom the electrons by absorbing the energy jump to the higher energy levels. This process is called excitation. The amount of energy absorbed by the electron is exactly equal to the energy difference of orbits. For example if electron jumped from K to L it must absorbed the energy which is equal the energy difference of these two level. The excited electron thus move back to lower energy level which is K by releasing the energy because electron can not stay longer in higher energy level and comes to ground state.

    De-excitation:

    When the excited electron fall back to the lower energy levels the energy is released in the form of radiations. this energy is exactly equal to the energy difference between the orbits. The characteristics bright colors are due to the these emitted radiations. These emitted radiations can be seen if they are fall in the visible region of spectrum
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