
(a)
Interpretation:
The change in energy of the hydrogen atom upon emission of a photon of IR radiation is to be determined.
Concept introduction:
1) The electrons in atoms revolve around the nucleus in certain circular orbits. The orbits are the energy levels. The orbits closer to the nucleus are of lesser energy than the ones further from the nucleus.
2) The energy of an electron changes sharply upon transition from one energy level to another.
3) The
The equation to find the difference in the energy between the two levels in hydrogen-like atoms is,
Here,
(b)
Interpretation:
The wavelength of the photon in
Concept introduction:
Bohr’s atomic model had the following postulates:
1) The electrons in atoms revolve around the nucleus in certain circular orbits. The orbits are the energy levels. The orbits closer to the nucleus are of lesser energy than the ones further from the nucleus.
2) The energy of an electron changes sharply upon transition from one energy level to another.
3) The angular momentum of an electron moving around the nucleus is quantized. Thus the angular momentum of an electron is a whole number multiple of
According to Plank-Einstein equation the energy of a photon is directly proportional to the frequency and is expressed as follows:
Here,
The equation that relates to the frequency and wavelength of electromagnetic radiation is as follows:
Here,
Equation (1) can be modified as follows:
Rearrange the above equation for

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Chapter 7 Solutions
Chemistry: The Molecular Nature of Matter and Change - Standalone book
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