Problem 125 2105 IR Spectrum (KBr disc) 1511 1343 4000 3000 1600 2000 V (cm") 1200 800 100 Mass Spectrum UV Spectrum 101 M* 147 80 log10€ > 4 60 C3H5 NO2 40 80 120 160 m/e 200 240 280 13C NMR Spectrum (50.0 MHz. CDCI, solution) expansion DEPT CH CH,t CH 85 80 ppm solvent expansion proton decoupled 85 80 ppm 200 160 120 80 40 8 (ppm) H NMR Spectrum (200 MHz. CDCI, solution) expansion TMS ppm 10 9. 8. 7. 6. 4. 8 (ppm) s of base peak
Problem 125 2105 IR Spectrum (KBr disc) 1511 1343 4000 3000 1600 2000 V (cm") 1200 800 100 Mass Spectrum UV Spectrum 101 M* 147 80 log10€ > 4 60 C3H5 NO2 40 80 120 160 m/e 200 240 280 13C NMR Spectrum (50.0 MHz. CDCI, solution) expansion DEPT CH CH,t CH 85 80 ppm solvent expansion proton decoupled 85 80 ppm 200 160 120 80 40 8 (ppm) H NMR Spectrum (200 MHz. CDCI, solution) expansion TMS ppm 10 9. 8. 7. 6. 4. 8 (ppm) s of base peak
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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![Problem 125
2105
IR Spectrum
(KBr disc)
1511
1343
2000
1600
V (cm")
4000
3000
1200
800
100
Mass Spectrum
UV Spectrum
101
M+* 147
80
log10ɛ > 4
60
20
C3 H5 NO2
40
80
120
160
200
240
280
m/e
13C NMR Spectrum
(50.0 MHz. CDCI, solution)
expansion
DEPT CH CH,t CHt
85
80 ppm
solvent
expansion
proton decoupled
85
80 ppm
200
160
120
80
40
8 (ppm)
H NMR Spectrum
(200 MHz. CDCI, solution)
expansion
TMS
opm
10
8
9.
4.
8 (ppm)
% of base peak](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff27c002d-c838-4cf6-8dbc-8534e7dda23c%2Fac5ce51e-c7b5-4179-98f9-9017a2cc5898%2Fm5s57d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem 125
2105
IR Spectrum
(KBr disc)
1511
1343
2000
1600
V (cm")
4000
3000
1200
800
100
Mass Spectrum
UV Spectrum
101
M+* 147
80
log10ɛ > 4
60
20
C3 H5 NO2
40
80
120
160
200
240
280
m/e
13C NMR Spectrum
(50.0 MHz. CDCI, solution)
expansion
DEPT CH CH,t CHt
85
80 ppm
solvent
expansion
proton decoupled
85
80 ppm
200
160
120
80
40
8 (ppm)
H NMR Spectrum
(200 MHz. CDCI, solution)
expansion
TMS
opm
10
8
9.
4.
8 (ppm)
% of base peak
![Account all numbers peaks immthe IR. In the mass
spectrum, determine degrees of unsaturation and
abel peaks if necessary. Assign all NMR spectra as
compleatly as possible: number of NMR signals,
ntegration,position, chemical shift and splitting.
please explain what goes for what section and write
clearly)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff27c002d-c838-4cf6-8dbc-8534e7dda23c%2Fac5ce51e-c7b5-4179-98f9-9017a2cc5898%2F11aajg_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Account all numbers peaks immthe IR. In the mass
spectrum, determine degrees of unsaturation and
abel peaks if necessary. Assign all NMR spectra as
compleatly as possible: number of NMR signals,
ntegration,position, chemical shift and splitting.
please explain what goes for what section and write
clearly)
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