
Interpretation:
The
Concept introduction:
An atom of hydrogen contains one electron. But the spectrum of hydrogen consists of a large number of lines. This is so because a sample of hydrogen contains a very large number of atoms. When energy is supplied to a sample of gaseous atoms of hydrogen, different atoms absorb different amounts of energy. Therefore, the electrons in different atoms jump to different energy levels. Upon losing the energies gained initially, the electrons jump back to lower energy levels and release radiations of different wavelengths.
The equation used to predict the position and wavelength of any line in a given series is called the Rydberg’s equation.
Rydberg’s equation is as follows:
Here,
The conversion factor to convert the wavelength from

Answer to Problem 7.68P
For the lines of wavelengths
Explanation of Solution
The radiation of wavelength
Substitute
Rearrange the above equation and calculate the value for
Thus, for the line of wavelength
The radiation of wavelengths
Substitute
Rearrange the above equation and calculate the value for
Thus, for the line of wavelength
Substitute
Rearrange the above equation and calculate the value for
Thus, for the line of wavelength
Substitute
Rearrange the above equation and calculate the value for
Thus, for the line of wavelength
The radiation of wavelength
Substitute
Rearrange the above equation and calculate the value for
Thus, for the line of wavelength
For the lines of wavelengths
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Chapter 7 Solutions
Connect 2-Year Access Card for Chemistry: The Molecular Nature of Matter and Change
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