6. Given the ¹H NMR provided, what is the molecule? The molecular formula is C7H₁4O. There is a strong peak in the IR spectrum at 1700 cm¹. Note that the integration line is shown below on the spectrum to show you the ratios of protons in the molecule. • Identify which peak corresponds to which protons on the molecule you drew. You can circle the protons on your molecule and use "2H," "3H," or "9H" to identify which peak belongs to which protons on your molecule. 6 5 4 Chemical shift (8) 3 2H 3H 2 9H 0 (ppm)

Organic Chemistry: A Guided Inquiry
2nd Edition
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Andrei Straumanis
ChapterL4: Proton (1h) Nmr Spectroscopy
Section: Chapter Questions
Problem 3E: Here are proton NMR data for 1-bromopropane: Ha : triplet (2H) 3.32ppm; Hb : multiplet (2H)1.81ppm;...
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6. Given the ¹H NMR provided, what is the molecule? The molecular formula is C7H₁40. There is a strong
peak in the IR spectrum at 1700 cm³¹. Note that the integration line is shown below on the spectrum to show
you the ratios of protons in the molecule.
Identify which peak corresponds to which protons on the molecule you drew. You can circle the protons on
your molecule and use "2H," "3H," or "9H" to identify which peak belongs to which protons on your molecule.
6
5
4
Chemical shift (8)
3
2H
3H
2
r
9H
1
0 (ppm)
Transcribed Image Text:6. Given the ¹H NMR provided, what is the molecule? The molecular formula is C7H₁40. There is a strong peak in the IR spectrum at 1700 cm³¹. Note that the integration line is shown below on the spectrum to show you the ratios of protons in the molecule. Identify which peak corresponds to which protons on the molecule you drew. You can circle the protons on your molecule and use "2H," "3H," or "9H" to identify which peak belongs to which protons on your molecule. 6 5 4 Chemical shift (8) 3 2H 3H 2 r 9H 1 0 (ppm)
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