Molarity practice worksheets

    • [DOC File]Equilibrium Practice Problems: using equilibrium constants ...

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      The numerical value of the two equilibrium constants above will be different. Remember the ideal gas law shows that the partial pressure of a gas is directly proportional to its molarity: P = = MRT (M is molarity and R = 0.0821 L-atm/mol-K). Using this relationship, it is …

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    • [DOCX File]Stoichiometry Practice Worksheet

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      Solutions to the Molarity Practice Worksheet. For the first five problems, you need to use the equation that says that the molarity of a solution is equal to the number of moles of solute divided by the number of liters of solution. 1)In this problem, simply solve using the molarity equation to find that the concentration of the solution is 10 ...

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    • [DOC File]Molarity Practice Worksheet - Socorro Independent School ...

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      Molarity Practice Worksheet. Find the molarity of the following solutions: SHOW WORK AND UNITS OR NO CREDIT. 0.25 moles of sodium chloride is dissolved to make 0.05 liters of solution..34 moles of calcium chloride is dissolved to make 2.5 liters of solution. 2.9 moles of magnesium chloride is dissolved to make 3.4 liters of solution.

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    • [DOC File]Molarity Practice Worksheet - Montgomery County Schools

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      Molarity Practice Worksheet. Molarity and Molality Practice Worksheet. Find the molarity of the following solutions: 1)0.5 moles of sodium chloride is dissolved to make 0.05 liters of solution. 2)0.5 grams of sodium chloride is dissolved to make 0.05 liters of solution. 3)734 grams of lithium sulfate are dissolved to make 2500 mL of solution.

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    • [DOC File]Molarity Practice Worksheet - PC\|MAC

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      Solutions to the Molarity Practice Worksheet. For the first five problems, you need to use the equation that says that the molarity of a solution is equal to the number of moles of solute divided by the number of liters of solution. 1) In this problem, simply solve using the molarity equation to find that the concentration of the solution is 10 M.

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    • [DOC File]Chapter 3 Practice Worksheet: Moles

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      d. Calculate the molarity of a solution that contains 0.0345 mol NH4Cl in 400 mL of solution. 8.63 x 10-2 M. e. How many grams of HNO2 are present in 35.0 mL of a 2.20 M solution of nitric acid? 3.62 grams HNO2. f. What is the concentration of 156 mL of solution made from 2.5 grams of KCl? 0.21 M KCl. g.

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    • [DOC File]Concentration Worksheet

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      5) What is the molarity of a solution in which 0.45 grams of sodium nitrate are dissolved in 265 mL of solution. 0.020 M. 6) What is the mole fraction of sulfuric acid in a solution made by adding 3.4 grams of sulfuric acid to 3,500 mL of water? 1.8 x 10-4 7) What will the volume of a 0.50 M solution be if it contains 25 grams of calcium hydroxide?

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    • [DOC File]Chapter 13 worksheet #1

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      What is the molarity of an ammonium carbonate solution if the concentration of ammonium ions is 2 M? What is the concentration of carbonate ions and what is the total concentration of solute particles? [CO32-] = 1M [particles] = 3 M. A solution was made by dissolving 800.0 g of NaOH in 2.00 L of water. Calculate the molality, mole fraction ...

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    • [DOC File]Mole Stoichiometry

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      Chemistry: Molarity and Stoichiometry. Using the definition of molarity, the given balanced equations, and stoichiometry, solve the following problems. 1. Ca(OH)2(aq) + H2SO4(aq) ( CaSO4(s) + 2H2O(l) a. How many L of 0.5 M Ca(OH)2(aq) are needed in order to have 5.5 mol of Ca(OH)2? b.

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    • [DOC File]Worksheet for Basic Stoichiometry

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      3. 0.031 moles of aluminium iodide. 4. 1.077 moles of magnesium phosphate. 5. 0.50 moles of calcium nitrate. Convert the following masses into their corresponding number of moles. 6. 23.5 g …

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