Suppose that a student is determining the total base content of an antacid tablet by performing a back titration. He/she weighs out a 0.3012 g portion of a tablet whose total weight is 1.5312 g, dissolves this in exactly 40.00 mL of deionized water, and then adds exactly 30.00 mL of 0.1000M HCl in order to bring the pH down to 1.9. This solution is then carefully back-titrated with 0.2000M NaOH, with 12.50 mL required to reach the equivalence point. Calculate the total base content (i.e., the number of mmoles of base contained) of the antacid tablet. (Formula weight of HCL = 36.46 g/m; formula weight of NaOH= 40.00 g/m)   ​​A) 0.500 mmoles​​D) 8.90 mmoles ​​B) 1.75 mmoles​​​E) none of the above ​​C) 2.54 mmoles​

General Chemistry - Standalone book (MindTap Course List)
11th Edition
ISBN:9781305580343
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
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Chapter16: Acid-base Equilibria
Section: Chapter Questions
Problem 16.125QP: A solution made up of 1.0 M NH3 and 0.50 M (NH4)2SO4 has a pH of 9.26. a Write the net ionic...
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Suppose that a student is determining the total base content of an antacid tablet by performing a back titration. He/she weighs out a 0.3012 g portion of a tablet whose total weight is 1.5312 g, dissolves this in exactly 40.00 mL of deionized water, and then adds exactly 30.00 mL of 0.1000M HCl in order to bring the pH down to 1.9. This solution is then carefully back-titrated with 0.2000M NaOH, with 12.50 mL required to reach the equivalence point. Calculate the total base content (i.e., the number of mmoles of base contained) of the antacid tablet. (Formula weight of HCL = 36.46 g/m; formula weight of NaOH= 40.00 g/m)

 

​​A) 0.500 mmoles​​D) 8.90 mmoles

​​B) 1.75 mmoles​​​E) none of the above

​​C) 2.54 mmoles​

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