Consider the following reaction where K. = 1.29×102 at 600 K: COCI, (g) CO (g) + Cl2 (g) A reaction mixture was found to contain 0.135 moles of COCI, (g), 2.34×102 moles of CO (g), and 4.51×102 moles of Cl, (g), in a 1.00 liter container. Indicate True (T) or False (F) for each of the following; ] 1. In order to reach equilibrium COCI2(g) must be produced . | 2. In order to reach equilibrium K. must decrease . | 3. In order to reach equilibrium CO must be produced . | 4. Qc is less than K. | 5. The reaction is at equilibrium. No further reaction will occur.

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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Consider the following reaction where \( K_c = 1.29 \times 10^{-2} \) at 600 K:

\[ \text{COCl}_2 \, (g) \rightleftharpoons \text{CO} \, (g) + \text{Cl}_2 \, (g) \]

A reaction mixture was found to contain 0.135 moles of \(\text{COCl}_2 \, (g)\), \(2.34 \times 10^{-2}\) moles of \(\text{CO} \, (g)\), and \(4.51 \times 10^{-2}\) moles of \(\text{Cl}_2 \, (g)\), in a 1.00 liter container.

**Indicate True (T) or False (F) for each of the following:**

1. In order to reach equilibrium \(\text{COCl}_2 (g)\) must be produced.
2. In order to reach equilibrium \( K_c \) must decrease.
3. In order to reach equilibrium \(\text{CO} (g)\) must be produced.
4. \( Q_c \) is less than \( K_c \).
5. The reaction is at equilibrium. No further reaction will occur.

**Instructions:**

For each statement, indicate your choice using the dropdown options provided.
Transcribed Image Text:Consider the following reaction where \( K_c = 1.29 \times 10^{-2} \) at 600 K: \[ \text{COCl}_2 \, (g) \rightleftharpoons \text{CO} \, (g) + \text{Cl}_2 \, (g) \] A reaction mixture was found to contain 0.135 moles of \(\text{COCl}_2 \, (g)\), \(2.34 \times 10^{-2}\) moles of \(\text{CO} \, (g)\), and \(4.51 \times 10^{-2}\) moles of \(\text{Cl}_2 \, (g)\), in a 1.00 liter container. **Indicate True (T) or False (F) for each of the following:** 1. In order to reach equilibrium \(\text{COCl}_2 (g)\) must be produced. 2. In order to reach equilibrium \( K_c \) must decrease. 3. In order to reach equilibrium \(\text{CO} (g)\) must be produced. 4. \( Q_c \) is less than \( K_c \). 5. The reaction is at equilibrium. No further reaction will occur. **Instructions:** For each statement, indicate your choice using the dropdown options provided.
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