PHYSICAL CHEMISTRY. VOL.1+2 (LL)(11TH)
PHYSICAL CHEMISTRY. VOL.1+2 (LL)(11TH)
11th Edition
ISBN: 9780198826910
Author: ATKINS
Publisher: Oxford University Press
Question
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Chapter 12, Problem 12B.5P
Interpretation Introduction

Interpretation:

The version of Karplus equation that fits the given data better is to be predicted.

Concept introduction:

The coupling constant of a compound is represented as JN, where N represents the number of nuclei involved in the coupling.  The coupling constant of J3HH depends on the dihedral angle denoted by ϕ.  The equation relating both is known as Karplus equation.

Expert Solution & Answer
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Answer to Problem 12B.5P

The version of Karplus equation which fits the given data is shown below.

  J3HH=A+Bcos2ϕHH+Ccos2ϕHH

Where,

  • J is the coupling constant.
  • ϕ is the dihedral angle.
  • A and B are Karplus constants.

Explanation of Solution

The Karplus equation given is shown below.

  J3HH=Acos2ϕ+B        (1)

Where,

  • J is the coupling constant.
  • ϕ is the dihedral angle.
  • A and B are Karplus constants

The equation (12B.14) is shown below.

  J3HH=A+Bcos2ϕHH+Ccos2ϕHH        (2)

Where,

  • J is the coupling constant.
  • ϕ is the dihedral angle.
  • A, B, C are Karplus constants

The given system is XYCHCHR3R4.  In first case when R3=R4=H, the structure of staggered conformation is shown below.

PHYSICAL CHEMISTRY. VOL.1+2 (LL)(11TH), Chapter 12, Problem 12B.5P , additional homework tip  1

Figure 1

In the above conformation, ϕ=60° between H2 and H3.

Substitute this value in equation (1).

  J3HH=7Hzcos2(60°)+(1Hz)=0.75Hz

Substitute this value in above equation (2).

  J3HH=7Hz+(1Hz)cos(60°)+(5Hz)cos(120°)=4Hz

In the above conformation, ϕ=60° between H2 and H4.

Substitute this value in above equation (1).

  J3HH=7Hzcos2(60°)+(1Hz)=0.75Hz

Substitute this value in above equation (2).

  J3HH=7Hz+(1Hz)cos(60°)+(5Hz)cos(120°)=4Hz

In the above conformation, ϕ=180° between H2 and H1.

Substitute this value in above equation (1).

  J3HH=7Hzcos2(180°)+(1Hz)=6Hz

Substitute this value in above equation (2).

  J3HH=7Hz+(1Hz)cos(180°)+(5Hz)cos(360°)=13Hz

The average of J3HH calculated from equation (1) is 2.5Hz.  The average of J3HH calculated from equation (2) is 7Hz.  The experimental value is 7.3Hz.  Therefore equation (2) is more precise.

In second case when R3=CH3 and R4=H, the structure of staggered conformation is shown below.

PHYSICAL CHEMISTRY. VOL.1+2 (LL)(11TH), Chapter 12, Problem 12B.5P , additional homework tip  2

Figure 2

In the above conformation, ϕ=60° between H2 and H3.

Substitute this value in above equation (1).

  J3HH=7Hzcos2(60°)+(1Hz)=0.75Hz

Substitute this value in above equation (2).

  J3HH=7Hz+(1Hz)cos(60°)+(5Hz)cos(120°)=4Hz

In the above conformation, ϕ=180° between H2 and H1.

Substitute this value in above equation (1).

  J3HH=7Hzcos2(180°)+(1Hz)=6Hz

Substitute this value in above equation (2).

  J3HH=7Hz+(1Hz)cos(180°)+(5Hz)cos(360°)=13Hz

The average of J3HH calculated from equation (1) is 3.37Hz.  The average of J3HH calculated from equation (2) is 8.5Hz.  The experimental value is 8Hz.  Therefore equation (2) is more precise.

In third case when R3=CH3 and R4=CH3, the structure of staggered conformation is shown below.

PHYSICAL CHEMISTRY. VOL.1+2 (LL)(11TH), Chapter 12, Problem 12B.5P , additional homework tip  3

Figure 3

In the above conformation, ϕ=180° between H2 and H1.

Substitute this value in equation (1).

  J3HH=7Hzcos2(180°)+(1Hz)=6Hz

Substitute this value in equation (2).

  J3HH=7Hz+(1Hz)cos(180°)+(5Hz)cos(360°)=13Hz

The average of J3HH calculated from equation (1) is 6Hz.  The average of J3HH calculated from equation (2) is 13Hz.  The experimental value is 11.2Hz.  Therefore equation (2) is more precise.

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Chapter 12 Solutions

PHYSICAL CHEMISTRY. VOL.1+2 (LL)(11TH)

Ch. 12 - Prob. 12A.2BECh. 12 - Prob. 12A.3AECh. 12 - Prob. 12A.3BECh. 12 - Prob. 12A.4AECh. 12 - Prob. 12A.4BECh. 12 - Prob. 12A.5AECh. 12 - Prob. 12A.5BECh. 12 - Prob. 12A.6AECh. 12 - Prob. 12A.6BECh. 12 - Prob. 12A.7AECh. 12 - Prob. 12A.7BECh. 12 - Prob. 12A.8AECh. 12 - Prob. 12A.8BECh. 12 - Prob. 12A.9AECh. 12 - Prob. 12A.9BECh. 12 - Prob. 12A.1PCh. 12 - Prob. 12A.3PCh. 12 - Prob. 12B.1DQCh. 12 - Prob. 12B.2DQCh. 12 - Prob. 12B.3DQCh. 12 - Prob. 12B.4DQCh. 12 - Prob. 12B.5DQCh. 12 - Prob. 12B.1AECh. 12 - Prob. 12B.1BECh. 12 - Prob. 12B.2AECh. 12 - Prob. 12B.2BECh. 12 - Prob. 12B.3AECh. 12 - Prob. 12B.3BECh. 12 - Prob. 12B.4AECh. 12 - Prob. 12B.4BECh. 12 - Prob. 12B.5AECh. 12 - Prob. 12B.5BECh. 12 - Prob. 12B.6AECh. 12 - Prob. 12B.6BECh. 12 - Prob. 12B.7AECh. 12 - Prob. 12B.7BECh. 12 - Prob. 12B.8AECh. 12 - Prob. 12B.8BECh. 12 - Prob. 12B.9AECh. 12 - Prob. 12B.9BECh. 12 - Prob. 12B.10AECh. 12 - Prob. 12B.10BECh. 12 - Prob. 12B.11AECh. 12 - Prob. 12B.11BECh. 12 - Prob. 12B.12AECh. 12 - Prob. 12B.12BECh. 12 - Prob. 12B.13AECh. 12 - Prob. 12B.13BECh. 12 - Prob. 12B.14AECh. 12 - Prob. 12B.14BECh. 12 - Prob. 12B.1PCh. 12 - Prob. 12B.2PCh. 12 - Prob. 12B.3PCh. 12 - Prob. 12B.5PCh. 12 - Prob. 12B.6PCh. 12 - Prob. 12B.7PCh. 12 - Prob. 12B.8PCh. 12 - Prob. 12B.9PCh. 12 - Prob. 12C.1DQCh. 12 - Prob. 12C.2DQCh. 12 - Prob. 12C.3DQCh. 12 - Prob. 12C.4DQCh. 12 - Prob. 12C.5DQCh. 12 - Prob. 12C.1AECh. 12 - Prob. 12C.1BECh. 12 - Prob. 12C.2AECh. 12 - Prob. 12C.2BECh. 12 - Prob. 12C.3AECh. 12 - Prob. 12C.3BECh. 12 - Prob. 12C.4AECh. 12 - Prob. 12C.4BECh. 12 - Prob. 12C.5AECh. 12 - Prob. 12C.5BECh. 12 - Prob. 12C.4PCh. 12 - Prob. 12C.5PCh. 12 - Prob. 12C.6PCh. 12 - Prob. 12C.10PCh. 12 - Prob. 12D.1DQCh. 12 - Prob. 12D.2DQCh. 12 - Prob. 12D.1AECh. 12 - Prob. 12D.1BECh. 12 - Prob. 12D.2AECh. 12 - Prob. 12D.2BECh. 12 - Prob. 12D.3AECh. 12 - Prob. 12D.3BECh. 12 - Prob. 12D.4AECh. 12 - Prob. 12D.4BECh. 12 - Prob. 12D.5AECh. 12 - Prob. 12D.5BECh. 12 - Prob. 12D.6AECh. 12 - Prob. 12D.6BECh. 12 - Prob. 12D.1PCh. 12 - Prob. 12D.2PCh. 12 - Prob. 12D.4PCh. 12 - Prob. 12D.5PCh. 12 - Prob. 12D.6PCh. 12 - Prob. 12D.7PCh. 12 - Prob. 12D.8PCh. 12 - Prob. 12.3IACh. 12 - Prob. 12.4IA
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