Stannous fluoride, or Tn(II) fluoride, is a compound commonly used in toothpastes with similar in function and activity to sodium fluoride (NaF), the conventionally added ingredient in toothpastes, but has been shown to be more effective. Draw the predicted 1Sn and F NMR spectra of stannous fluoride. The table shows the atural abundance of the NMR active nuclei of interest with their magnetogyric ratios. Magnetogyric tatio (10 rac/1s) NMR active NA Isotope 1155n 0.35 1/2 -8.80 1175n 7.61 1/2 -9.59 1195n 8.58 1/2 -10.01 19F 100 1/2 25.18 Stannous Fluoride (SnF2)
Stannous fluoride, or Tn(II) fluoride, is a compound commonly used in toothpastes with similar in function and activity to sodium fluoride (NaF), the conventionally added ingredient in toothpastes, but has been shown to be more effective. Draw the predicted 1Sn and F NMR spectra of stannous fluoride. The table shows the atural abundance of the NMR active nuclei of interest with their magnetogyric ratios. Magnetogyric tatio (10 rac/1s) NMR active NA Isotope 1155n 0.35 1/2 -8.80 1175n 7.61 1/2 -9.59 1195n 8.58 1/2 -10.01 19F 100 1/2 25.18 Stannous Fluoride (SnF2)
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:Stannous fluoride, or Tn(1l) fluoride, is a compound commonly used in toothpastes with similar in function and
activity to sodium fluoride (NaF), the conventionally added ingredient in toothpastes, but has been shown to
be more effective. Draw the predicted 11Sn and 1F NMR spectra of stannous fluoride. The table shows the
natural abundance of the NMR active nuclei of interest with their magnetogyric ratios.
NIMR active
Magnetogyric tatio
(10 rad/s)
NA
E Isotope
1155n
0.35
1/2
-8.80
117Sn
7.61
1/2
-9,59
1195n
8.58
1/2
-10.01
19F
100
1/2
25.18
Stannous Fluoride (SnF2)
V =
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