A titration curve is constructed by plotting the pH of the analyte solution versus the volume of the reagent added as the titration progresses. As the equivalence point is approached, there is a rapid change in the pH. Titration curves enable us to explain how end points are detected and their relationship to equivalence points. They can also serve as guides for choosing the proper indicators for a particular acid-base titration. Explain how each plot can be used to interpret the acid-base titration.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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A titration curve is constructed by plotting the pH of the analyte solution versus the volume of
the reagent added as the titration progresses. As the equivalence point is approached, there is a
rapid change in the pH. Titration curves enable us to explain how end points are detected and
their relationship to equivalence points. They can also serve as guides for choosing the proper
indicators for a particular acid-base titration. Explain how each plot can be used to interpret the acid-base titration.

pH vs NaOH volume
14
12
10
8
Equivalent point (v) = 25mL
%3D
6
2
pKa = 1.5
10
15
20
25
30
35
Amount of NaOH added (mL)
4.
Hd
Transcribed Image Text:pH vs NaOH volume 14 12 10 8 Equivalent point (v) = 25mL %3D 6 2 pKa = 1.5 10 15 20 25 30 35 Amount of NaOH added (mL) 4. Hd
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