Concept explainers
(a)
Interpretation:
The molarity of the acetic acid solution is to be determined.
(a)
Explanation of Solution
The molarity of the acetic acid solution is to be determined.
The number of moles is calculated from the following expression:
Here,
The molarity of the solution is determined by the following expression:
Here,
The molar mass of acetic acid is
Substitute
Substitute
Therefore, the molarity of
(b)
Interpretation:
The molarity of sucrose solution is to be determined.
(b)
Explanation of Solution
The molar mass of sucrose is
Substitute
Substitute
Therefore, the molarity of
(c)
Interpretation:
The molarity of hydrogen chloride solution is to be determined.
(c)
Explanation of Solution
The molar mass of hydrogen chloride is
Substitute
Substitute
Therefore, the molarity of
(d)
Interpretation:
The molarity of the potassium hydroxide solution is to be determined.
(d)
Explanation of Solution
The molar mass of potassium hydroxide is
Substitute
The conversion of volume from milliliters to liters is given as follows:
Substitute
Substitute
Therefore, the molarity of
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Chapter 4 Solutions
INTRO. TO CHEM LOOSELEAF W/ALEKS 18WKCR
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- Determine the volume of sodium hydroxide solution needed to prepare 26.2 g sodium phosphate, Na3PO4, by the reaction 3NaOH(aq)+H3PO4(aq)Na3PO4(aq)+3H2O(l) The sodium hydroxide solution, whose density is 1.133 g/mL, contains 12.0% NaOH by mass.arrow_forwardWhat volume of 0.250 M HCI is required to neutralize each of the following solutions? a. 25.0 mL of 0.103 M sodium hydroxide, NaOH b. 50.0 mL of 0.00501 M calcium hydroxide, Ca(OH)2 c. 20.0 mL of 0.226 M ammonia, NH3 d. 15.0 mL of 0.0991 M potassium hydroxide, KOHarrow_forwardConsider a 13.0% solution of sulfuric acid, H2SO4,whose density is 1.090 g/mL. (a) Calculate the molarity of this solution. (b) To what volume should 100. mL of this solution bediluted to prepare a 1.10-M solution?arrow_forward
- Sodium chloride is used in intravenous solutions for medical applications. The NaCl concentration in such solutions must be accurately known and can be assessed by reacting the solution with an experimentally determined volume of AgNO3 solution of known concentration. The net ionic equation is Ag+(aq)+Cl(aq)AgCl(s) Suppose that a chemical technician uses 19.3 mL of 0.200-M AgNO3 to convert all the NaCl in a 25.0-mL sample of an intravenous solution to AgCl. Calculate the molarity of NaCl in the solution.arrow_forwardWhat is the difference between a solute and a solvent?arrow_forwardA student weighs out a 4.80-g sample of aluminum bromide, transfers it to a 100-mL volumetric flask, adds enough water to dissolve it, and then adds water to the 100-mL mark. What is the molarity of aluminum bromide in the resulting solution?arrow_forward
- Citric acid, which can be obtained from lemon juice, has the molecular formula C6H8O7. A 0.250-g sample of citric acid dissolved in 25.0 mL of water requires 37.2 mL of 0.105 M NaOH for complete neutralization. What number of acidic hydrogens per molecule does citric acid have?arrow_forwardA stock solution of potassium dichromate, K2Cr2O7, is made by dissolving 84.5 g of the compound in 1.00 L of solution. How many milliliters of this solution are required to prepare 1.00 L of 0.150 M K2Cr2O7?arrow_forwardAcetic acid (HC2H3O2) can be prepared by the action of the acetobacter organism on dilute solutions of ethanol (C2H5OH). The equation for the reaction is C2H5OH(aq)+O2(g)HC2H3O2(aq)+H2OHow many milliliters of a 12.5% (by volume) solution of ethanol are required to produce 175 mL of 0.664 M acetic acid? (Densityofpureethanol=0.789g/mL.)arrow_forward
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