IR Spectrum (liquid film) I 4000 whichicht 100k 80 60 40% 20 40 80 13C NMR Spectrum (50.0 MHz. CDCI, solution) proton decoupled 200 ¹H NMR Spectrum (200 MHz, CDCI, solution) TT 4.0 10 % of base peak 2960 9 3000 41 77 79 2000 107/109 l 120 8 v (cm') m/e M** 156/158/160 160 160 3.5 1600 expansions ppm L 7 1200 200 240 120 766 1 800 Mass Spectrum C3H6BrCl 280 650 solvent 80 TTTTTTT 2.0 ppm 2.5 6 5 4 H-C-H Problem 18 No significant UV absorption above 220 nm H-C-H 3 40 H-C-H 2 0 1 12- 8 (ppm TMS 8 (p

Chemistry
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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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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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What is the IR and HNMRAndCNMR and mass
IR Spectrum
(liquid film)
4000
100
80
60
40
20
% of base peak
2960
9
L
3000
41
77
79
2000
80
11.
40
13C NMR Spectrum
(50.0 MHz. CDCI, solution)
proton decoupled
200
¹H NMR Spectrum
(200 MHz, CDCI, solution)
T
4.0
3.5 ppm
2.5
1
10
8 7 6
v (cm¹)
107/109
120
1600
M**
156/158/160
160
m/e
160
expansions
200
1200
120
766
800
Mass Spectrum
C3H6BrCl
280
240
650
H-C-H
solvent
L
80
2.0 ppm
1
5 4
Problem 18
No significant UV
absorption above 220 nm
H-C-H
3
40
H-C-H
2
0
1
124
8 (ppm)
TMS
C
8 (pp
Transcribed Image Text:IR Spectrum (liquid film) 4000 100 80 60 40 20 % of base peak 2960 9 L 3000 41 77 79 2000 80 11. 40 13C NMR Spectrum (50.0 MHz. CDCI, solution) proton decoupled 200 ¹H NMR Spectrum (200 MHz, CDCI, solution) T 4.0 3.5 ppm 2.5 1 10 8 7 6 v (cm¹) 107/109 120 1600 M** 156/158/160 160 m/e 160 expansions 200 1200 120 766 800 Mass Spectrum C3H6BrCl 280 240 650 H-C-H solvent L 80 2.0 ppm 1 5 4 Problem 18 No significant UV absorption above 220 nm H-C-H 3 40 H-C-H 2 0 1 124 8 (ppm) TMS C 8 (pp
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