Elements of Physical Chemistry
Elements of Physical Chemistry
7th Edition
ISBN: 9780192522764
Author: Peter Atkins; Julio de Paula
Publisher: Oxford University Press Academic UK
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Chapter 13, Problem 13B.2E

(a)

Interpretation Introduction

Interpretation:

For protons in acetaldehyde, the difference in local magnetic field betwenn the two regions has to be calculated at 1.2T.

(a)

Expert Solution
Check Mark

Explanation of Solution

Given information,

  AcetaldehydeCH3CHO δCH3CHO=2.20 δCH3CHO=9.80Appliedfield=1.2T

First calculate the resonance frequency for proton,

ν=γNB0=2.6752×108T-1s-1×1.2T2×3.14=0.511×108s-1=51.1MHz(1MHz=106Hz)

Now calculate the local magnetic field difference between the two protons,

δ=ν-ν0ν0×106ν-ν0=δν0×10-6=(δCHO-δCH3)ν0=(9.80-2.20)51.1Hz=388Hz

Therefore, The difference between the local magnetic field of -CH3 and -CHO group in 1.2 T is 388Hz.

(b)

Interpretation Introduction

Interpretation:

For protons in acetaldehyde, the difference in local magnetic field betwenn the two regions has to be calculated at 5.0T.

(b)

Expert Solution
Check Mark

Explanation of Solution

Given information,

  AcetaldehydeCH3CHO δCH3CHO=2.20 δCH3CHO=9.80Appliedfield=5.0T

First calculate the resonance frequency for proton,

ν=γNB0=2.6752×108T-1s-1×5.0T2×3.14=2.13×108s-1=213MHz(1MHz=106Hz)

Now calculate the local magnetic field difference between the two protons,

δ=ν-ν0ν0×106ν-ν0=δν0×106=(δCHO-δCH3)ν0=(9.80-2.20)213Hz=1619Hz

Therefore, The difference between the local magnetic field of -CH3 and -CHO group in 5.0T is 1619Hz.

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