A chemist dissolved 5.384 g of CH3COOH in 250.0 ml of distilled water. The acid dissociation constant for acetic acid is 1.8 x 105 a. Determine the initial concentration of acetic acid. b. Write out the dissociation equation for acetic acid and complete the ICE box. C. Determine the pH of the solution.

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A chemist dissolved 5.384 g of CH3COOH in 250.0 mL of distilled water. The acid dissociation
constant for acetic acid is 1.8 x 105
a. Determine the initial concentration of acetic acid.
b. Write out the dissociation equation for acetic acid and complete the ICE box.
Determine the pH of the solution.
d. 4.3 x 103 mol of CH3COO was added to the acetic acid solution. Assume that the volume of
C.
the solution does not change. Calculate the initial concentration of CH3C0'.
e. Complete the ICE box for the new solution.
Determine the pH of the new solution.
f.
Transcribed Image Text:A chemist dissolved 5.384 g of CH3COOH in 250.0 mL of distilled water. The acid dissociation constant for acetic acid is 1.8 x 105 a. Determine the initial concentration of acetic acid. b. Write out the dissociation equation for acetic acid and complete the ICE box. Determine the pH of the solution. d. 4.3 x 103 mol of CH3COO was added to the acetic acid solution. Assume that the volume of C. the solution does not change. Calculate the initial concentration of CH3C0'. e. Complete the ICE box for the new solution. Determine the pH of the new solution. f.
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