NMR can be used to determine substitution patterns in aromatic derivatives. The NMR below indicates that the chlorophenol derivative is (Hint: there are three possible derivatives for a disubstituted aromatic ring, ortho meta and para, draw all three and think about the expected pattern for each considering symmetry). You can look up coupling constants and use these to determine if the coupling is relatively small or relatively large.) 7 Select one: O a. 1,4-substituted O b. 1,3-substituted O c. 1,2-substituted

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NMR can be used to determine substitution patterns in aromatic derivatives.
The NMR below indicates that the chlorophenol derivative is
(Hint: there are three possible derivatives for a disubstituted aromatic ring, ortho meta and para, draw all three and think about the expected pattern
for each considering symmetry). You can look up coupling constants and use these to determine if the coupling is relatively small or relatively large.)
Select one:
7
a. 1,4-substituted
b. 1,3-substituted
O c. 1,2-substituted
Transcribed Image Text:NMR can be used to determine substitution patterns in aromatic derivatives. The NMR below indicates that the chlorophenol derivative is (Hint: there are three possible derivatives for a disubstituted aromatic ring, ortho meta and para, draw all three and think about the expected pattern for each considering symmetry). You can look up coupling constants and use these to determine if the coupling is relatively small or relatively large.) Select one: 7 a. 1,4-substituted b. 1,3-substituted O c. 1,2-substituted
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