3. Selenium is a constituent of many California soils but can become toxic to wildlife in certain of its forms. One of its acidic forms undergoes the following reaction: H₂SeO3 (aq) → HSeO3¯ (aq) + H+ (aq) You find the following thermodynamic constants: Species H₂SeO3(aq) HSeO3(aq) H+ (aq) AG (kJ/mol) AH (kJ/mol) -426.2 -507.5 -431.5 -514.5 0.0 0.0 a. Calculate AGº for the chemical reaction above. b. Calculate the equilibrium constant at 25 °C for the reaction above. c. For the following system composition: [H₂SeO3] = 10-3 M [HSeO3] = 10-³ M pH = 4 Determine whether the system is (a) at equilibrium, (b) moving toward products, or (c) moving toward reactants. Show work to justify your answer.
3. Selenium is a constituent of many California soils but can become toxic to wildlife in certain of its forms. One of its acidic forms undergoes the following reaction: H₂SeO3 (aq) → HSeO3¯ (aq) + H+ (aq) You find the following thermodynamic constants: Species H₂SeO3(aq) HSeO3(aq) H+ (aq) AG (kJ/mol) AH (kJ/mol) -426.2 -507.5 -431.5 -514.5 0.0 0.0 a. Calculate AGº for the chemical reaction above. b. Calculate the equilibrium constant at 25 °C for the reaction above. c. For the following system composition: [H₂SeO3] = 10-3 M [HSeO3] = 10-³ M pH = 4 Determine whether the system is (a) at equilibrium, (b) moving toward products, or (c) moving toward reactants. Show work to justify your answer.
Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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![### Selenium Reaction and Thermodynamics
**Context:**
Selenium is a constituent of many California soils but can become toxic to wildlife in certain forms. One of its acidic forms undergoes the following reaction:
\[ \text{H}_2\text{SeO}_3 \, (\text{aq}) \rightleftharpoons \text{HSeO}_3^- \, (\text{aq}) + \text{H}^+ \, (\text{aq}) \]
**Thermodynamic Constants:**
| Species | ΔG°f (kJ/mol) | ΔH°f (kJ/mol) |
|------------------|---------------|---------------|
| H2SeO3 (aq) | -426.2 | -507.5 |
| HSeO3⁻ (aq) | -431.5 | -514.5 |
| H⁺ (aq) | 0.0 | 0.0 |
**Tasks:**
a. Calculate ΔG° for the chemical reaction above.
b. Calculate the equilibrium constant at 25 °C for the reaction above.
c. For the following system composition:
- \([ \text{H}_2\text{SeO}_3 ] = 10^{-3} \, \text{M} \)
- \([ \text{HSeO}_3^- ] = 10^{-3} \, \text{M} \)
- pH = 4
Determine whether the system is (a) at equilibrium, (b) moving toward products, or (c) moving toward reactants. Show work to justify your answer.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2ebe91de-3090-46ac-907f-d0393c4d1db8%2F91fd97a2-994d-40d0-b13c-43ac8da15096%2Fs6ku10j_processed.jpeg&w=3840&q=75)
Transcribed Image Text:### Selenium Reaction and Thermodynamics
**Context:**
Selenium is a constituent of many California soils but can become toxic to wildlife in certain forms. One of its acidic forms undergoes the following reaction:
\[ \text{H}_2\text{SeO}_3 \, (\text{aq}) \rightleftharpoons \text{HSeO}_3^- \, (\text{aq}) + \text{H}^+ \, (\text{aq}) \]
**Thermodynamic Constants:**
| Species | ΔG°f (kJ/mol) | ΔH°f (kJ/mol) |
|------------------|---------------|---------------|
| H2SeO3 (aq) | -426.2 | -507.5 |
| HSeO3⁻ (aq) | -431.5 | -514.5 |
| H⁺ (aq) | 0.0 | 0.0 |
**Tasks:**
a. Calculate ΔG° for the chemical reaction above.
b. Calculate the equilibrium constant at 25 °C for the reaction above.
c. For the following system composition:
- \([ \text{H}_2\text{SeO}_3 ] = 10^{-3} \, \text{M} \)
- \([ \text{HSeO}_3^- ] = 10^{-3} \, \text{M} \)
- pH = 4
Determine whether the system is (a) at equilibrium, (b) moving toward products, or (c) moving toward reactants. Show work to justify your answer.
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