ORGANIC CHEMISTRY SAPLING ACCESS + ETEX
ORGANIC CHEMISTRY SAPLING ACCESS + ETEX
6th Edition
ISBN: 9781319306977
Author: LOUDON
Publisher: INTER MAC
Question
Book Icon
Chapter 13, Problem 13.4P
Interpretation Introduction

(a)

Interpretation:

The chemical shift of the CH3 protons of dimethoxymethane in a spectrum at the magnetic field of 21,100 gauss is to be stated.

Concept introduction:

Chemical shift of a proton is its resonance frequency in an applied magnetic field. Chemical shift can be expressed in Hz as a frequency difference and in ppm as their δ value. Chemical shift value in ppm remain constant and chemical shift in Hz changes at different magnetic field value.

Expert Solution
Check Mark

Answer to Problem 13.4P

The chemical shift of the CH3 protons of dimethoxymethane in a spectrum at the magnetic field of 21, 100 gauss is 296.6Hz.

Explanation of Solution

Chemical shift value in ppm remain constant in any field strength. Therefore the chemical shift value of CH3 protons of dimethoxymethane in ppm is 3.30ppm.

The chemical shift in Hz is calculated by the formula shown below.

Δν=δ×ν0…(1)

But,

ν0=γH2π×B0

Substitute the value of ν0=γH2π×B0 in equation (1).

Δν=δ×γH2π×B0 … (2)

Where,

Δν is the frequency difference.

γH is the gyromagnetic ratio, 26753radiansgauss1s1.

B0 is the magnetic field.

δ is the chemical shift value in ppm.

ν0 is the absorption frequency.

Substitute the value of δ as 3.30ppm; B0 as 21,100 gauss; γH as 26753radiansgauss1s1 in equation (1).

Δν=δ×γH2π×B0=3.30ppm×26753radiansgauss1s12(3.14)radians×21100gauss=296626018ppms1

The unit of Δν is converted from ppms1 to s1 by using the formula (ppms1×106=s1).

Therefore,

Δν=296626018ppms1×106=296.6s1

The unit 1s1 is equal to 1Hz.

So,

296.6s1=296.6Hz

The value of Δν in Hz is shown below.

Δν=296.6Hz

Therefore, the chemical shift of the CH3 protons of dimethoxymethane in a spectrum at the magnetic field of 21, 100 gauss is 296.6Hz.

Conclusion

The chemical shift of the CH3 protons of dimethoxymethane in a spectrum at the magnetic field of 21, 100 gauss is 296.6Hz.

Interpretation Introduction

(b)

Interpretation:

The chemical shift of the CH3 protons of dimethoxymethane in a spectrum at the magnetic field of 141,000 gauss is to be stated.

Concept introduction:

Chemical shift of a proton is its resonance frequency in an applied magnetic field. Chemical shift can be expressed in Hz as a frequency difference and in ppm as their δ value. Chemical shift value in ppm remain constant and chemical shift in Hz changes at different magnetic field value.

Expert Solution
Check Mark

Answer to Problem 13.4P

The chemical shift of the CH3 protons of dimethoxymethane in a spectrum at the magnetic field of 141,000gauss gauss is 1982.20Hz.

Explanation of Solution

Chemical shift value in ppm remain constant in any field strength. Therefore the chemical shift value of CH3 protons of dimethoxymethane in ppm is 3.30ppm.

The chemical shift in Hz is calculated by the formula shown below.

Δν=δ×ν0 …(1)

But,

ν0=γH2π×B0

Substitute the value of ν0=γH2π×B0 in equation (1).

Δν=δ×γH2π×B0 …(2)

Where,

Δν is the frequency difference.

γH is the gyromagnetic ratio, 26753radiansgauss1s1.

B0 is the magnetic field.

δ is the chemical shift value in ppm.

ν0 is the absorption frequency.

Substitute the value of δ as 3.30ppm; B0 as 141,000 gauss;

γH as 26753radiansgauss1s1 in equation (1).

Δν=δ×γH2π×B0=3.30ppm×26753radiansgauss1s12(3.14)radians×141000gauss=1982192820ppms1

The unit of Δν is converted from ppms1 to s1 by using the formula (ppms1×106=s1).

Therefore,

Δν=1982192820ppms1×106=1982.19s11982.20s1

The unit 1s1 is equal to 1Hz.

So,

1982.20s1=1982.20Hz

The value of Δν in Hz is shown below.

Δν=1982.20Hz

Therefore, the chemical shift of the CH3 protons of dimethoxymethane in a spectrum at the magnetic field of 141,000gauss is 1982.20Hz.

Conclusion

The chemical shift of the CH3 protons of dimethoxymethane in a spectrum at the magnetic field of 141,000gauss is 1982.20Hz.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
We learned four factors (ARIO) for comparing the relative acidity of compounds. When two of these factors are in competition, the order of priority is the order in which these factors were covered ("atom" being the most important factor and "orbital" being the least important). However, we also mentioned that there are exceptions to this order of priority. Compare the two compounds and identify the exception. OH PK-4.75 SH PK-10.6 5. "Resonance" is more important than "atom" because the conjugate base of first compound is more stable than the second. "Atom" is more important than "resonance" because the conjugate base of first compound is more stable than the second. "Resonance" is more important than "atom" because the conjugate base of second compound is more stable than the first. "Atom" is more important than "resonance" because the conjugate base of second compound is more stable than the first.
The relative fitnesses of three genotypes are WA/A= 1.0, WA/a = 0.7, and Wa/a = 0.3. If the population starts at the allele frequency p = 0.5, what is the value of p in the next generation? (3 pts) 12pt v Paragraph V BIU AL
Identify the most acidic proton in the compound: a d b Оа Ob Ос ○ d
Knowledge Booster
Background pattern image
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Principles of Instrumental Analysis
Chemistry
ISBN:9781305577213
Author:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Publisher:Cengage Learning
Text book image
Fundamentals Of Analytical Chemistry
Chemistry
ISBN:9781285640686
Author:Skoog
Publisher:Cengage
Text book image
Physical Chemistry
Chemistry
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Wadsworth Cengage Learning,
Text book image
Organic Chemistry: A Guided Inquiry
Chemistry
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Cengage Learning
Text book image
Organic Chemistry
Chemistry
ISBN:9781305580350
Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Publisher:Cengage Learning