(iii) State how the use of ¹¹B and ³¹P NMR spectroscopy can be used to confirm the formation of F3B-PD3. This answer requires that you construct labelled line diagrams to predict the NMR spectra in BF3, PD3 and F3B-PD3. (You may assume that the ¹¹B nucleus is 100% abundant as a first approximation). (iv) The molecule PD3 was substituted with one hydrogen to produce PD₂H. State how ¹H NMR spectroscopy can be used to confirm the formation of F3B PD₂H. This answer requires that you construct labelled line diagrams to predict the 'H NMR spectra in the PD₂H and F3B-PD₂H. (You may assume that the ¹¹B nucleus is 100% abundant as a first approximation).

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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(iii) State how the use of ¹¹B and ³¹P NMR spectroscopy can be used to confirm the
formation of F3B-PD3. This answer requires that you construct labelled line diagrams
to predict the NMR spectra in BF3, PD3 and F3B-PD3. (You may assume that the ¹¹B
nucleus is 100% abundant as a first approximation).
(iv) The molecule PD3 was substituted with one hydrogen to produce PD₂H. State how ¹H
NMR spectroscopy can be used to confirm the formation of F3B PD₂H. This answer
requires that you construct labelled line diagrams to predict the ¹H NMR spectra in the
PD₂H and F3B-PD₂H. (You may assume that the 11B nucleus is 100% abundant as a
first approximation).
Transcribed Image Text:(iii) State how the use of ¹¹B and ³¹P NMR spectroscopy can be used to confirm the formation of F3B-PD3. This answer requires that you construct labelled line diagrams to predict the NMR spectra in BF3, PD3 and F3B-PD3. (You may assume that the ¹¹B nucleus is 100% abundant as a first approximation). (iv) The molecule PD3 was substituted with one hydrogen to produce PD₂H. State how ¹H NMR spectroscopy can be used to confirm the formation of F3B PD₂H. This answer requires that you construct labelled line diagrams to predict the ¹H NMR spectra in the PD₂H and F3B-PD₂H. (You may assume that the 11B nucleus is 100% abundant as a first approximation).
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