IR Spectrum (liquid film) 4000 100 80 % of base peak 3000 60 40 20 40 13C NMR Spectrum (100 MHz CDCI, solution) 59 80 DEPT CH CH. CH proton decoupled www. 200 ¹H NMR Spectrum (400 MHz, CDCI, solution) 1739 2000 v (cm') 115 120 1600 M 145-1% 160 m/e 160 MY 800 Mass Spectrum C6H1004 280 solvent 80 1200 200 240 120 Problem 44 No significant UV absorption above 220 nm 0 40 8 (ppm)

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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What is the IR and HNMRAndCNMR and mass in this example
IR Spectrum
(liquid film)
4000
3000
59
100
80
60
40
20
40
13C NMR Spectrum
(100 MHz CDCI, solution)
% of base peak
87
80
DEPT CH CH. CH
proton decoupled
200
¹H NMR Spectrum
(400 MHz, CDCI, solution)
10
9
8
1739
1600
v (cm¹)
2000
115
M 146-1%
120 160
m/e
mm
1200
800
Mass Spectrum
C6H1004
280
160
7
200 240
120
6
5
solvent
80
4
Problem 44
No significant UV
absorption above 220 nm
0
40
3
2
1
8 (ppm)
TMS
0
8 (ppm)
13
Transcribed Image Text:IR Spectrum (liquid film) 4000 3000 59 100 80 60 40 20 40 13C NMR Spectrum (100 MHz CDCI, solution) % of base peak 87 80 DEPT CH CH. CH proton decoupled 200 ¹H NMR Spectrum (400 MHz, CDCI, solution) 10 9 8 1739 1600 v (cm¹) 2000 115 M 146-1% 120 160 m/e mm 1200 800 Mass Spectrum C6H1004 280 160 7 200 240 120 6 5 solvent 80 4 Problem 44 No significant UV absorption above 220 nm 0 40 3 2 1 8 (ppm) TMS 0 8 (ppm) 13
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