Make a graph a titration curve for the titration of 30.00 mL of a 0.125 M solution of acetic acid, HC2H3O2, with 0.125 M sodium hydroxide, NaOH. This does not need to be an actual graph, just a free-hand sketch. However, the sketch must include calculated values for the following points (and you must show your work). Use Appendix A.3, lonization Constants for Acids and Bases from our textbook, Interactive General Chemistry: Atoms First, for any weak acid or weak base ionization constants you need to work through this Learning Target. You can access the Appendix in the eBook on Achieve or here: 1, The initial pH of the analyte solution 2, The pH of the analyte solution after the addition of 10.00 mL of titrant 3, The pH of the analyte solution at the half-equivalence point 4,The pH of the analyte solution at the equivalence point
Make a graph a titration curve for the titration of 30.00 mL of a 0.125 M solution of acetic acid, HC2H3O2, with 0.125 M sodium hydroxide, NaOH. This does not need to be an actual graph, just a free-hand sketch. However, the sketch must include calculated values for the following points (and you must show your work). Use Appendix A.3, lonization Constants for Acids and Bases from our textbook, Interactive General Chemistry: Atoms First, for any weak acid or weak base ionization constants you need to work through this Learning Target. You can access the Appendix in the eBook on Achieve or here: 1, The initial pH of the analyte solution 2, The pH of the analyte solution after the addition of 10.00 mL of titrant 3, The pH of the analyte solution at the half-equivalence point 4,The pH of the analyte solution at the equivalence point
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:Make a graph a titration curve for the titration of 30.00 mL of a 0.125 M solution of acetic acid,
HC2H3O2, with 0.125 M sodium hydroxide, NaOH. This does not need to be an actual graph, just
a free-hand sketch. However, the sketch must include calculated values for the following points
(and you must show your work). Use Appendix A.3, lonization Constants for Acids and Bases
from our textbook, Interactive General Chemistry: Atoms First, for any weak acid or weak base
ionization constants you need to work through this Learning Target. You can access the
Appendix in the eBook on Achieve or here:
1, The initial pH of the analyte solution
2, The pH of the analyte solution after the addition of 10.00 mL of titrant
3, The pH of the analyte solution at the half-equivalence point
4,The pH of the analyte solution at the equivalence point
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