Approximate mass of NazS203·5H20 needed 1.55 Exact mass of Na2SzO3•5H20 weighed 1.57 Nominal molarity of NazS203 solution Calculation:

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
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How do you calculate the nominal of Na2S2O3 of the solution? 

Prepare 250 mL of 0.025 M NazS203. Because the Na2S203 solution is the titrant, its
concentration must be known with accuracy. Although the solution is dilute, you are
preparing a relatively large volume, so it can be prepared directly from the solid.
Using the proper lab technique, prepare the solution. Record the exact mass of NazS2O3-5H2O
used to all allowable significant figures.
Calculate and record the molarity of the actual solution to all allowable significant
figures, and show your calculations and results below. Because the NazS203-5H2O used
to make the solution may be impure (and/or the water of hydration number may be
variable), we will call this the “nominal" molarity (the molarity that the solution would
be, if the NazS203.5H20 were pure) rather than the "exact" molarity. Before you use the
NazS203 solution to analyze your saturated Ca(103)2 solution, you will standardize it
against your accurately known, dilute KIO3 solution in order to confirm its molarity.
Approximate mass of NazS203-5H20 needed
1.55
1.57
Exact mass of Na2S203•5H20 weighed
Nominal molarity of NazS203 solution
Calculation:
155
Transcribed Image Text:Prepare 250 mL of 0.025 M NazS203. Because the Na2S203 solution is the titrant, its concentration must be known with accuracy. Although the solution is dilute, you are preparing a relatively large volume, so it can be prepared directly from the solid. Using the proper lab technique, prepare the solution. Record the exact mass of NazS2O3-5H2O used to all allowable significant figures. Calculate and record the molarity of the actual solution to all allowable significant figures, and show your calculations and results below. Because the NazS203-5H2O used to make the solution may be impure (and/or the water of hydration number may be variable), we will call this the “nominal" molarity (the molarity that the solution would be, if the NazS203.5H20 were pure) rather than the "exact" molarity. Before you use the NazS203 solution to analyze your saturated Ca(103)2 solution, you will standardize it against your accurately known, dilute KIO3 solution in order to confirm its molarity. Approximate mass of NazS203-5H20 needed 1.55 1.57 Exact mass of Na2S203•5H20 weighed Nominal molarity of NazS203 solution Calculation: 155
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