Determine the structure from the FTIR and mass spectrum. The proton NMR has a singlet with an integration of 6 hydrogens at 2.6 ppm, a triplet with an integration of 1 hydrogen at 7.41 ppm, and a doublet with an integration of 3 hydrogens at 7.25 ppm.
Determine the structure from the FTIR and mass spectrum. The proton NMR has a singlet with an integration of 6 hydrogens at 2.6 ppm, a triplet with an integration of 1 hydrogen at 7.41 ppm, and a doublet with an integration of 3 hydrogens at 7.25 ppm.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Determine the structure from the FTIR and mass spectrum. The proton NMR has a singlet with an integration of 6 hydrogens at 2.6 ppm, a triplet with an integration of 1 hydrogen at 7.41 ppm, and a doublet with an integration of 3 hydrogens at 7.25 ppm.

Transcribed Image Text:100 Pan
90
70
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30-
20
10
0
4000
4350 2024 (GMT-06:00)
3500
m
3000
2400
2900
2000
Wavenumbers (cm-1)
2500
mmmm
1500
1000
765.80
689.64
431.21
500

Transcribed Image Text:Rel. Intensity
100-
80
60
40
20-
0.0+
0.0
20
40
Sample Z
MASS SPECTRUM
60
m/z
80
100
120
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Is this the correct carbon NMR for the structure?

Transcribed Image Text:140
tavas
130-1387
140327
1262937
120
100
Carbon NMR
21.5271
X
20 (ppm)
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