Chemistry
Chemistry
4th Edition
ISBN: 9780078021527
Author: Julia Burdge
Publisher: McGraw-Hill Education
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Chapter 7, Problem 138AP

The ionization energy of a certain element is 412 kJ/mol. When the atoms of this element are in the first excited state, however, the ionization energy is only 126 kJ/mol. Based on this information, calculate the wavelength of light emitted in a transition from the first excited state to the ground state.

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Interpretation Introduction

Interpretation: The wavelength of light discharged in a transition from first state to a ground state is to be calculated.

Concept introduction:

Ionization energy is defined as the energy which is required to remove valence electron from a neutral atom or molecule in gaseous phase.

The ionization energy is expressed in kJ/mol.

The wavelength of light is represented as follows:

λ=hcΔE

Here, ΔE

is the energy difference, h

is Planck’s constant, and c

is the speed of light.

Answer to Problem 138AP

Solution: 419 nm

Explanation of Solution

Given information: E1=412 kJ/mol

E2=126 kJ/mol

The energy difference between the ground state and the dissociation limit (E1) is equal to 412 kJ/mol, the energy difference between the first excited state and the dissociation limit (E2)

is equal to 126 kJ/mol. So, the energy difference between the ground state and the excited state (ΔE) is given as follows:

ΔE=E1E2 …… (1)

Substitute 412 kJ/mol

for E1 and 126 kJ/mol

for E2

in equation (1) as follows,

ΔE = 412 kJ/mol 126 kJ/mol = 286 kJ/mol

In one kilojoule, there are 103

joule present.

So,

286 kJ/mol=(286 kJmol)(103 JkJ)=286×103 J/mol

In one mole, there are 6.022×1023photons present.

So, in 286×103 J/mol, the number of photons are as follows:

(286×103J1mol)×(1mol6.022×1023photons)=4.75×1019J/photon

The wavelength of light that is emitted in a transition is calculated as follows:

λ=hcΔE …… (2)

Substitute 6.626×1034J.s for h, 3.0×108m/s for c, and 4.75×1019J/photon

for ΔE

in equation (2) as follows:

λ=(6.626×1034J.s)(3.0×108m/s)(4.75×1019J)=419×10-9m

Since 1 m=1109 nm,

Therefore,

419×10-9m=(419×10-9m)(1109 nm/m)=419 nm

Conclusion

The wavelength of light discharged in a transition is 419 nm.

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Chapter 7 Solutions

Chemistry

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