4. A solution is created by dissolving 74g of NaNO3 into enough water to make 3.50L of solution. Calculate the m/v% concentration of NaNo3 in this solution. Use stoichiometry conversion factors and actually put divider lines in between the numbers. The answer should be 2.1% m/V. 5. A 2.00L bottle of mineral water has a concentration of %0.00162 KCl mass/volume. Calculate the mass inmilligrams (mg) of KCl present in the bottle. Use stoichiometry conversion factors and actually put divider lines in between the numbers. The answer should be 32.4mg Please answer 4 and 5.
4. A solution is created by dissolving 74g of NaNO3 into enough water to make 3.50L of solution. Calculate the m/v% concentration of NaNo3 in this solution. Use stoichiometry conversion factors and actually put divider lines in between the numbers. The answer should be 2.1% m/V. 5. A 2.00L bottle of mineral water has a concentration of %0.00162 KCl mass/volume. Calculate the mass inmilligrams (mg) of KCl present in the bottle. Use stoichiometry conversion factors and actually put divider lines in between the numbers. The answer should be 32.4mg Please answer 4 and 5.
General, Organic, and Biological Chemistry
7th Edition
ISBN:9781285853918
Author:H. Stephen Stoker
Publisher:H. Stephen Stoker
Chapter8: Solutions
Section: Chapter Questions
Problem 8.5EP: For each of the following pairs of solutions, select the solution for which solute solubility is...
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4. A solution is created by dissolving 74g of NaNO3 into enough water to make 3.50L of solution. Calculate the m/v% concentration of NaNo3 in this solution. Use stoichiometry conversion factors and actually put divider lines in between the numbers. The answer should be 2.1% m/V.
5. A 2.00L bottle of mineral water has a concentration of %0.00162 KCl mass/volume. Calculate the mass in
milligrams (mg) of KCl present in the bottle. Use stoichiometry conversion factors and actually put divider lines in between the numbers. The answer should be 32.4mg
Please answer 4 and 5.
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