General Chemistry
General Chemistry
4th Edition
ISBN: 9781891389603
Author: Donald A. McQuarrie, Peter A. Rock, Ethan B. Gallogly
Publisher: University Science Books
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Chapter 4, Problem 4.42P
Interpretation Introduction

Interpretation:

Wavelength of the first five lines in Paschen series has to be calculated.

Expert Solution & Answer
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Explanation of Solution

Wavelength of First line:

Energy of photon emitted on relaxation from n=4 state to n=3 state in first line of Paschen series and is calculated as shown below.

    Ephoton=(2.1799×1018J)(1nf21ni2)=(2.1799×1018J)(132142)=(2.1799×1018J)(19116)=0.1059×1018J

Wavelength of photon is calculated as shown below.

    λ=hcE=6.626×1034Js×2.9979×108ms10.1059×1018J=187.5739887×108m=1875×109m=1875nm

Therefore, the wavelength of photon is calculated as 1875nm.

Wavelength of Second line:

Energy of photon emitted on relaxation from n=5 state to n=3 state in second line of Paschen series and is calculated as shown below.

    Ephoton=(2.1799×1018J)(1nf21ni2)=(2.1799×1018J)(132152)=(2.1799×1018J)(19125)=0.1550×1018J

Wavelength of photon is calculated as shown below.

    λ=hcE=6.626×1034Js×2.9979×108ms10.1550×1018J=128.1553897×108m=1281×109m=1281nm

Therefore, the wavelength of photon is calculated as 1281nm.

Wavelength of Third line:

Energy of photon emitted on relaxation from n=6 state to n=3 state in third line of Paschen series and is calculated as shown below.

    Ephoton=(2.1799×1018J)(1nf21ni2)=(2.1799×1018J)(132162)=(2.1799×1018J)(19136)=0.1816×1018J

Wavelength of photon is calculated as shown below.

    λ=hcE=6.626×1034Js×2.9979×108ms10.1816×1018J=109.3837302×108m=1094×109m=1094nm

Therefore, the wavelength of photon is calculated as 1094nm.

Wavelength of Fourth line:

Energy of photon emitted on relaxation from n=7 state to n=3 state in third line of Paschen series and is calculated as shown below.

    Ephoton=(2.1799×1018J)(1nf21ni2)=(2.1799×1018J)(132172)=(2.1799×1018J)(19149)=0.1977×1018J

Wavelength of photon is calculated as shown below.

    λ=hcE=6.626×1034Js×2.9979×108ms10.1977×1018J=100.4758998×108m=1004×109m=1004nm

Therefore, the wavelength of photon is calculated as 1004nm.

Wavelength of Fifth line:

Energy of photon emitted on relaxation from n=8 state to n=3 state in third line of Paschen series and is calculated as shown below.

    Ephoton=(2.1799×1018J)(1nf21ni2)=(2.1799×1018J)(132182)=(2.1799×1018J)(19164)=0.2082×1018J

Wavelength of photon is calculated as shown below.

    λ=hcE=6.626×1034Js×2.9979×108ms10.2082×1018J=95.40867147×108m=954×109m=954nm

Therefore, the wavelength of photon is calculated as 95.4×1016m.

Summary of the wavelength of first five lines in Paschen series is given below.

ni45678
Wavelength/nm1875128110941004954

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