KLEIN'S ORGANIC CHEMISTRY
KLEIN'S ORGANIC CHEMISTRY
3rd Edition
ISBN: 9781119423126
Author: Klein
Publisher: WILEY
Question
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Chapter 15, Problem 48PP

 (a)

Interpretation Introduction

Interpretation: The number of signals and the chemical shift range of each signal to be predicted.

Concept Introduction:

The 13CNMR spectrum gives information on the different electronic environments of carbon. As like 1HNMR , the number of signals generated in 13CNMR are predicted by performing symmetry operations (rotation or reflection symmetry). Only chemical shift values are reported in the spectrum but not the multiplicity and integration values because the coupling between two neighboring 13C13C nuclei are weakly involved due to the low abundance of 13C isotopes of carbon atom.

Chemical shift range: The bench mark chemical shift region for the carbons of different electronic environments.

220-150ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  1

Carbon atoms of carbonyl groups are highly deshielded.

150-100ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  2   KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  3

sp2 -hybridized carbon atoms.

100-50ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  4

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  5

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  6

sp -hybridized carbon atoms as well as sp3 hybridized carbon atoms that are deshielded by electronegative atoms.

0-50ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  7

sp3 hybridized carbon atoms(methyl, methylene and Methine groups)

(b)

Interpretation Introduction

Interpretation: The number of signals and the chemical shift range of each signal to be predicted.

Concept Introduction:

The 13CNMR spectrum gives information on the different electronic environments of carbon. As like 1HNMR , the number of signals generated in 13CNMR are predicted by performing symmetry operations (rotation or reflection symmetry). Only chemical shift values are reported in the spectrum but not the multiplicity and integration values because the coupling between two neighboring 13C13C nuclei are weakly involved due to the low abundance of 13C isotopes of carbon atom.

Chemical shift range: The bench mark chemical shift region for the carbons of different electronic environments.

220-150ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  8

Carbon atoms of carbonyl groups are highly deshielded.

150-100ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  9   KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  10

sp2 -hybridized carbon atoms.

100-50ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  11

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  12

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  13

sp -hybridized carbon atoms as well as sp3 hybridized carbon atoms that are deshielded by electronegative atoms.

0-50ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  14

sp3 hybridized carbon atoms(methyl, methylene and Methine groups)

 (c)

Interpretation Introduction

Interpretation: The number of signals and the chemical shift range of each signal to be predicted.

Concept Introduction:

The 13CNMR spectrum gives information on the different electronic environments of carbon. As like 1HNMR , the number of signals generated in 13CNMR are predicted by performing symmetry operations (rotation or reflection symmetry). Only chemical shift values are reported in the spectrum but not the multiplicity and integration values because the coupling between two neighboring 13C13C nuclei are weakly involved due to the low abundance of 13C isotopes of carbon atom.

Chemical shift range: The bench mark chemical shift region for the carbons of different electronic environments.

220-150ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  15

Carbon atoms of carbonyl groups are highly deshielded.

150-100ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  16   KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  17

sp2 -hybridized carbon atoms.

100-50ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  18

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  19

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  20

sp -hybridized carbon atoms as well as sp3 hybridized carbon atoms that are deshielded by electronegative atoms.

0-50ppm

KLEIN'S ORGANIC CHEMISTRY, Chapter 15, Problem 48PP , additional homework tip  21

sp3 hybridized carbon atoms(methyl, methylene and Methine groups)

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Chapter 15 Solutions

KLEIN'S ORGANIC CHEMISTRY

Ch. 15.5 - Prob. 8PTSCh. 15.5 - Ethyl 3-ethoxypropanoate is a solvent used in the...Ch. 15.5 - Prob. 10CCCh. 15.6 - Prob. 4LTSCh. 15.6 - Prob. 11PTSCh. 15.6 - Prob. 12PTSCh. 15.6 - Prob. 13PTSCh. 15.6 - Prob. 14ATSCh. 15.7 - Prob. 5LTSCh. 15.7 - Prob. 15PTSCh. 15.7 - The volatile organic compounds (VOCs) produced by...Ch. 15.7 - Prob. 17CCCh. 15.7 - Prob. 18CCCh. 15.8 - Prob. 6LTSCh. 15.8 - Prob. 19PTSCh. 15.9 - Prob. 7LTSCh. 15.9 - Prob. 21PTSCh. 15.9 - The familiar odor produced when rain falls on dry...Ch. 15.10 - Prob. 8LTSCh. 15.10 - Prob. 23PTSCh. 15.10 - Prob. 24PTSCh. 15.10 - Neurotransmitters are small molecules that are...Ch. 15.12 - Prob. 9LTSCh. 15.12 - Prob. 26PTSCh. 15.12 - Prob. 27ATSCh. 15.13 - Prob. 10LTSCh. 15.13 - Prob. 28PTSCh. 15.13 - Prob. 29PTSCh. 15.13 - Prob. 30PTSCh. 15 - Prob. 32PPCh. 15 - Prob. 33PPCh. 15 - Prob. 34PPCh. 15 - Prob. 35PPCh. 15 - Prob. 36PPCh. 15 - Prob. 37PPCh. 15 - Prob. 38PPCh. 15 - Prob. 39PPCh. 15 - Prob. 40PPCh. 15 - Prob. 41PPCh. 15 - Prob. 42PPCh. 15 - Prob. 43PPCh. 15 - Prob. 44PPCh. 15 - Prob. 45PPCh. 15 - Prob. 46PPCh. 15 - Prob. 47PPCh. 15 - Prob. 48PPCh. 15 - Prob. 49PPCh. 15 - Prob. 50PPCh. 15 - Prob. 51PPCh. 15 - Prob. 52PPCh. 15 - Prob. 53PPCh. 15 - Prob. 54PPCh. 15 - Prob. 55PPCh. 15 - Prob. 56PPCh. 15 - Propose the structure of a compound that exhibits...Ch. 15 - Prob. 58PPCh. 15 - Prob. 59PPCh. 15 - Prob. 60PPCh. 15 - Prob. 61PPCh. 15 - Prob. 62PPCh. 15 - Prob. 63IPCh. 15 - Prob. 64IPCh. 15 - Prob. 65IPCh. 15 - Prob. 66IPCh. 15 - Prob. 67IPCh. 15 - Prob. 68IPCh. 15 - Prob. 69IPCh. 15 - Prob. 70IPCh. 15 - Prob. 71IPCh. 15 - Prob. 72IPCh. 15 - Prob. 73IPCh. 15 - Prob. 74IPCh. 15 - Prob. 75IPCh. 15 - Prob. 76IPCh. 15 - Prob. 77IPCh. 15 - Prob. 78CPCh. 15 - Compound 1 can serve as a precursor in the...Ch. 15 - Prob. 81CP
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