2. a. Determine the structure of the molecule with a molecular formula of C₁1H₁40 that gives rise to the following spectra. IR: LOD TRANSMITTANCEI D Noise (overtones) 4000 ¹H NMR: 12 11 HSP-46-578 3000 1H S T 10 9 2000 HAVENUMBERI-I (Peaks at 3087, 2968, 2928, 2824, 2732, 1700, 1606) 2H 2H d d 8 7 1500 T 5 4 2H d 1000 3 1H m 2 6H d 1 500 6 ppm b. What product would result upon addition of (excess) PhMgBr to this compound? 0

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2. a. Determine the structure of the molecule with a molecular formula of C₁1H₁40 that gives
rise to the following spectra.
IR:
LOD
TRANSMITTANCEI
D
Noise
(overtones)
4000
¹H NMR:
12
11
HSP-46-578
1H
S
3000
10
HAVENUMBERI-11
(Peaks at 3087, 2968, 2928, 2824, 2732, 1700, 1606)
9
2000
2H 2H
d d
8
7
1500
5
4
2H
d
T
1000
3
1H
m
2
6H
d
1
500
6
ppm
b. What product would result upon addition of (excess) PhMgBr to this compound?
0
Transcribed Image Text:2. a. Determine the structure of the molecule with a molecular formula of C₁1H₁40 that gives rise to the following spectra. IR: LOD TRANSMITTANCEI D Noise (overtones) 4000 ¹H NMR: 12 11 HSP-46-578 1H S 3000 10 HAVENUMBERI-11 (Peaks at 3087, 2968, 2928, 2824, 2732, 1700, 1606) 9 2000 2H 2H d d 8 7 1500 5 4 2H d T 1000 3 1H m 2 6H d 1 500 6 ppm b. What product would result upon addition of (excess) PhMgBr to this compound? 0
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