(a)
Interpretation:
The values of
Concept introduction:
The difference between the energies of two energy levels is the amount of energy in a photon emitted or absorbed when an electron makes a transition. The energy of a photon emitted or absorbed by an electron is,
Here,
The equation to relate the frequency and wavelength of radiation is as follows:
The above relation can be modified as follows:
(b)
Interpretation:
The values of
Concept introduction:
Electromagnetic waves are radiations that are formed by oscillating electric and magnetic fields. The electric and magnetic field components of an electromagnetic wave are perpendicular to each other.
The difference between the energies of two energy levels is the amount of energy in a photon emitted or absorbed when an electron makes a transition. The energy of a photon emitted or absorbed by an electron is,
Here,
The equation to relate the frequency and wavelength of radiation is as follows:
The above relation can be modified as follows:
(c)
Interpretation:
The values of
Concept introduction:
Electromagnetic waves are radiations that are formed by oscillating electric and magnetic fields. The electric and magnetic field components of an electromagnetic wave are perpendicular to each other.
The difference between the energies of two energy levels is the amount of energy in a photon emitted or absorbed when an electron makes a transition. The energy of a photon emitted or absorbed by an electron is,
Here,
The equation to relate the frequency and wavelength of radiation is as follows:
The above relation can be modified as follows:
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