3. When a solution containing silver ions is mixed with another solution containing chloride ions, a precipitate of silver chloride forms. When 50.00 ml of a silver nitrate solution is mixed with an excess of a sodium chloride solution, all the silver ion is precipitated as silver chloride. The solid is collected, washed, dried, and found to have a mass of 3.7652 g. Calculate the molarity of the original silver nitrate solution.

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3. When a solution containing silver ions is mixed with another solution containing chloride ions, a precipitate of
silver chloride forms. When 50.00 ml of a silver nitrate solution is mixed with an excess of a sodium chloride
solution, all the silver ion is precipitated as silver chloride. The solid is collected, washed, dried, and found to
have a mass of 3.7652 g. Calculate the molarity of the original silver nitrate solution.
Transcribed Image Text:3. When a solution containing silver ions is mixed with another solution containing chloride ions, a precipitate of silver chloride forms. When 50.00 ml of a silver nitrate solution is mixed with an excess of a sodium chloride solution, all the silver ion is precipitated as silver chloride. The solid is collected, washed, dried, and found to have a mass of 3.7652 g. Calculate the molarity of the original silver nitrate solution.
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