Calculate the pH of a solution that is 0.0330 M in

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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**Calculating the pH of Solutions**

For each of the following compounds, calculate the pH of a solution that has a concentration of 0.0330 M.

**a. Sodium Oxalate, \( \text{Na}_2\text{C}_2\text{O}_4 \)**

- Acid dissociation constant: \( K_{a2} = 5.42 \times 10^{-5} \).
- \( \text{pH} = \_\_\_\_\_\_ \)

**b. Sodium Sulfite, \( \text{Na}_2\text{SO}_3 \)**

- Acid dissociation constant: \( K_{a2} = 6.6 \times 10^{-8} \).
- \( \text{pH} = \_\_\_\_\_\_ \)

**c. Ethylenediammonium Chloride, \( \text{C}_2\text{H}_4(\text{NH}_3^+\text{Cl}^-)_2 \)**

- Acid dissociation constant: \( K_{a1} = 1.42 \times 10^{-7} \).
- \( \text{pH} = \_\_\_\_\_\_ \)

**Instructions:** Determine the pH for each compound solution using the given concentration and acid dissociation constant. The blanks are provided for your calculated pH values.
Transcribed Image Text:**Calculating the pH of Solutions** For each of the following compounds, calculate the pH of a solution that has a concentration of 0.0330 M. **a. Sodium Oxalate, \( \text{Na}_2\text{C}_2\text{O}_4 \)** - Acid dissociation constant: \( K_{a2} = 5.42 \times 10^{-5} \). - \( \text{pH} = \_\_\_\_\_\_ \) **b. Sodium Sulfite, \( \text{Na}_2\text{SO}_3 \)** - Acid dissociation constant: \( K_{a2} = 6.6 \times 10^{-8} \). - \( \text{pH} = \_\_\_\_\_\_ \) **c. Ethylenediammonium Chloride, \( \text{C}_2\text{H}_4(\text{NH}_3^+\text{Cl}^-)_2 \)** - Acid dissociation constant: \( K_{a1} = 1.42 \times 10^{-7} \). - \( \text{pH} = \_\_\_\_\_\_ \) **Instructions:** Determine the pH for each compound solution using the given concentration and acid dissociation constant. The blanks are provided for your calculated pH values.
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