Calculating the mass volume percent concentration 5. A solution is prepared by dissolving 10 grams of glucose in enough water to give 325 ml of solution. What is the mass volume percent concentration of glucose in the solution? 6. A solution is prepared by dissolving 12 g of lactose in enough water to give 375 ml of solution. What is the mass volume percent concentration of lactose in the solution? Calculating the molarity of a solution Determine the molarities of the following solutions: 7. 4.35 moles of KMNO4 dissolved in enough water to give 750 ml of solution 8. 20 g of NaOH dissolved in enough water to give 1.50 L of solution

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Chapter7: Solutions And Colloids
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Calculating the mass volume percent concentration
5. A solution is prepared by dissolving 10 grams of glucose in enough water to give 325
ml of solution. What is the mass volume percent concentration of glucose in the
solution?
6. A solution is prepared by dissolving 12 g of lactose in enough water to give 375 ml of
solution. What is the mass volume percent concentration of lactose in the solution?
Calculating the molarity of a solution
Determine the molarities of the following solutions:
7. 4.35 moles of KMNO4 dissolved in enough water to give 750 ml of solution
8. 20 g of NaOH dissolved in enough water to give 1.50 L of solution
Transcribed Image Text:Calculating the mass volume percent concentration 5. A solution is prepared by dissolving 10 grams of glucose in enough water to give 325 ml of solution. What is the mass volume percent concentration of glucose in the solution? 6. A solution is prepared by dissolving 12 g of lactose in enough water to give 375 ml of solution. What is the mass volume percent concentration of lactose in the solution? Calculating the molarity of a solution Determine the molarities of the following solutions: 7. 4.35 moles of KMNO4 dissolved in enough water to give 750 ml of solution 8. 20 g of NaOH dissolved in enough water to give 1.50 L of solution
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