An AgNO3 solution was prepared by dissolving 5.25 g of pure AgNO3 (169.87g/mol) in sufficient water to make 250 mL solution. A 5.1 g sample containing MgCl2 (95.21g/mol) required 24.35 mL of the prepared AgNO3 for titration to the equivalence point. Calculate % MgCl2 in the sample.
An AgNO3 solution was prepared by dissolving 5.25 g of pure AgNO3 (169.87g/mol) in sufficient water to make 250 mL solution. A 5.1 g sample containing MgCl2 (95.21g/mol) required 24.35 mL of the prepared AgNO3 for titration to the equivalence point. Calculate % MgCl2 in the sample.
Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter14: Equilibria In Acid-base Solutions
Section: Chapter Questions
Problem 48QAP: A 0.2481 M solution of KOH is used to titrate 30.00 mL of 0.269 M hydrobromic acid. Assume that...
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An AgNO3 solution was prepared by dissolving 5.25 g of pure AgNO3 (169.87g/mol) in sufficient water to make 250 mL solution. A 5.1 g sample containing MgCl2 (95.21g/mol) required 24.35 mL of the prepared AgNO3 for titration to the equivalence point. Calculate % MgCl2 in the sample.
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isn't it that moles of MgCl2 is 1/2 x moles AgNO3 based on stoichiometry?
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