19. For Ha, how many non-equivalent protons are on the adjacent carbon atoms (that is, how many non-equivalent protons are 3 bonds away)? 20. How does the answer in question 19 explain the splitting pattern of H,? Does the splitting pattern of Ha follow the N+1 Rule? 21. For Hp, how many non-equivalent protons are on the adjacent carbon atoms (that is, how many non-equivalent protons are 3 bonds away)?

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Please answer 19-21 based on pic provided. Thank you!

19. For Ha, how many non-equivalent protons are on the adjacent carbon atoms (that is, how
many non-equivalent protons are 3 bonds away)?
20. How does the answer in question 19 explain the splitting pattern of Ha? Does the splitting
pattern of Ha follow the N+1 Rule?
21. For Hp, how many non-equivalent protons are on the adjacent carbon atoms (that is, how
many non-equivalent protons are 3 bonds away)?
Transcribed Image Text:19. For Ha, how many non-equivalent protons are on the adjacent carbon atoms (that is, how many non-equivalent protons are 3 bonds away)? 20. How does the answer in question 19 explain the splitting pattern of Ha? Does the splitting pattern of Ha follow the N+1 Rule? 21. For Hp, how many non-equivalent protons are on the adjacent carbon atoms (that is, how many non-equivalent protons are 3 bonds away)?
Peak Ratio (intensitities)
N (number of
non-equivalent
adjacent H's)
Multiplicity
1
Singlet
1
1:1
Doublet
1:2:1
Triplet
3
1:3:3:1
Quartet
4
1:4:6:4:1
Quintet
1:5:10:10:5:1
Sextet
Hz
1800
1500
1200
Br
Br
Br — С — С—нЬ
на
Hb
6.0
5.5
5.0
4.5
4.0
3.5
8 (ppm)
O 2013 Pearson Education, Inc.
Transcribed Image Text:Peak Ratio (intensitities) N (number of non-equivalent adjacent H's) Multiplicity 1 Singlet 1 1:1 Doublet 1:2:1 Triplet 3 1:3:3:1 Quartet 4 1:4:6:4:1 Quintet 1:5:10:10:5:1 Sextet Hz 1800 1500 1200 Br Br Br — С — С—нЬ на Hb 6.0 5.5 5.0 4.5 4.0 3.5 8 (ppm) O 2013 Pearson Education, Inc.
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