. Associate the diagnostic peaks in the IR with functional groups, and assign the signals in the NMR to specific protons. Use this information to deduce the structures of your compounds. 1.4 1.3 1.2 Figure 5. NMR spectrum (300 MHz) of ethyl (R)-3-hydroxybutanoate, with chiral shift reagent added. 1.404 1.383 1.315 1.292 1.267

Organic Chemistry: A Guided Inquiry
2nd Edition
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Andrei Straumanis
ChapterL4: Proton (1h) Nmr Spectroscopy
Section: Chapter Questions
Problem 14E
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. Associate the diagnostic peaks in the IR with functional groups, and assign the
signals in the NMR to specific protons. Use this information to deduce the
structures of your compounds.
1.4
1.3
1.2
Figure 5. NMR spectrum (300 MHz) of ethyl (R)-3-hydroxybutanoate, with chiral shift
reagent added.
1.404
1.383
1.315
1.292
1.267
Transcribed Image Text:. Associate the diagnostic peaks in the IR with functional groups, and assign the signals in the NMR to specific protons. Use this information to deduce the structures of your compounds. 1.4 1.3 1.2 Figure 5. NMR spectrum (300 MHz) of ethyl (R)-3-hydroxybutanoate, with chiral shift reagent added. 1.404 1.383 1.315 1.292 1.267
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