(a)
Interpretation: The molarity of the
Concept introduction:The molarity of any substance is obtained from the moles of substance to the volume of the solution.
The formula to calculate the molarity is as follows.
(b)
Interpretation:The molarity of the
Concept introduction:The molarity of any substance is obtained from the moles of substance to the volume of the solution.
The formula to calculate the molarity is as follows.
(c)
Interpretation:The molarity of the
Concept introduction:The molarity of any substance is obtained from the moles of substance to the volume of the solution.
The formula to calculate the molarity is as follows.
(d)
Interpretation:The molarity of the
Concept introduction:The molarity of any substance is obtained from the moles of substance to the volume of the solution.
The formula to calculate the molarity is as follows.
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Chemical Principles
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- A soft drink contains an unknown mass of citric acid, C3H5O(COOH)3. It requires 6.42 mL of 9.580 × 10−2-M NaOH to neutralize the citric acid in 10.0 mL of the soft drink. C3H5O(COOH)3(aq) + 3 NaOH(aq) → Na3C3H5O(COO)3(aq) + 3 H2O(ℓ) Determine which step in these calculations for the mass of citric acid in 1 mL soft drink is incorrect? Why? n (NaOH) = (6.42 mL)(1L/1000 mL)(9.580 × 10−2 mol/L) n (citric acid) = (6.15 × 10−4 mol NaOH) × (3 mol citric acid/1 mol NaOH) m (citric acid in sample) = (1.85 × 10−3 mol citric acid) × (192.12 g/mol citric acid) m (citric acid in 1 mL soft drink) = (0.354 g citric acid)/(10 mL soft drink) Determine the correct result.arrow_forwardou have two solutions containing solute A. To determine which solution has the highest concentration of A in molarity, which of the following must you know? (There may be more than one answer.) the mass in grams of A in each solution the molar mass of A the volume of’ water added to each solution the total volume of the solution plain your answer.arrow_forwardDetermine 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_forward
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