5) How much water would you need to add to 10.0 ml of a 16.0 M solution in order to make a 0.050M HCI solution?

Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter3: Mass Relations In Chemistry; Stoichiometry
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5) How much water would you need to add to 10.0 ml of a 16.0 M solution in order to
make a 0.050 M HCI solution?
6) Calculate the moles of chloride ions contained in 25.00 mL of a .0500 M copper(II)
chloride solution
Transcribed Image Text:5) How much water would you need to add to 10.0 ml of a 16.0 M solution in order to make a 0.050 M HCI solution? 6) Calculate the moles of chloride ions contained in 25.00 mL of a .0500 M copper(II) chloride solution
3) Calculate the molarity of a solution containing 2.50 g of copper(II) chloride, CuClz, in
2.50 L of solution.
4) Calculate the molarity of a potassium chloride, KCI, solution if 37.3 g of KCl are
dissolved in water to give a final solution volume of 500.0 mL.
5) Intravenous (IV) saline solutions are often administered to patients in the hospital.
Normal saline solution contains 0.90 g NaCl in exactly 100.0 mL of solution.
Calculate the molarity of this solution.
6) What volume of 0.25 M solution can be prepared using 0.50 moles of KCI.
Transcribed Image Text:3) Calculate the molarity of a solution containing 2.50 g of copper(II) chloride, CuClz, in 2.50 L of solution. 4) Calculate the molarity of a potassium chloride, KCI, solution if 37.3 g of KCl are dissolved in water to give a final solution volume of 500.0 mL. 5) Intravenous (IV) saline solutions are often administered to patients in the hospital. Normal saline solution contains 0.90 g NaCl in exactly 100.0 mL of solution. Calculate the molarity of this solution. 6) What volume of 0.25 M solution can be prepared using 0.50 moles of KCI.
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