Splitting of a signal in a proton NMR spectrum tells us the number of chemically non-equivalent hydrogens in the immediate vicinity of the hydrogen giving the signal. Predict the number of lines exhibited by hydrogens at the labeled positions in a first-order NMR spectrum. (Make the approximation that all coupling constants are equal.) 1) но, The number of lines exhibited by hydrogen(s) a is The number of lines exhibited by hydrogen(s) b is The number of lines exhibited by hydrogen(s) c is

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Chapter1: Chemical Foundations
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Splitting of a signal in a proton NMR spectrum tells us the number of chemically non-equivalent
hydrogens in the immediate vicinity of the hydrogen giving the signal. Predict the number of lines
exhibited by hydrogens at the labeled positions in a first-order NMR spectrum. (Make the
approximation that all coupling constants are equal.)
HO
1)
с
b
The number of lines exhibited by hydrogen(s) is
The number of lines exhibited by hydrogen(s) b is
The number of lines exhibited by hydrogen(s) c is
2)
C
The number of lines exhibited by hydrogen(s) a is
The number of lines exhibited by hydrogen(s) b is
The number of lines exhibited by hydrogen(s) c is
Transcribed Image Text:Splitting of a signal in a proton NMR spectrum tells us the number of chemically non-equivalent hydrogens in the immediate vicinity of the hydrogen giving the signal. Predict the number of lines exhibited by hydrogens at the labeled positions in a first-order NMR spectrum. (Make the approximation that all coupling constants are equal.) HO 1) с b The number of lines exhibited by hydrogen(s) is The number of lines exhibited by hydrogen(s) b is The number of lines exhibited by hydrogen(s) c is 2) C The number of lines exhibited by hydrogen(s) a is The number of lines exhibited by hydrogen(s) b is The number of lines exhibited by hydrogen(s) c is
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