At a certain temperature, the equilibrium constant K for the following reaction is 0.83: Cl₂(g) + CHC1₂(g) →HC1(g) + CC1₂(g) Use this information to complete the following table. Suppose a 38. L reaction vessel is filled with 2.0 mol of Cl₂ and 2.0 mol of CHCl3. What can you say about the composition of the mixture in the vessel at equilibrium? What is the equilibrium constant for the following reaction? Be sure your answer has the correct number of significant digits. HC1(g) + CC1₂(g) Cl₂(g) +CHC13 (9) What is the equilibrium constant for the following reaction? Be sure your answer has the correct number of significant digits. 2 C1₂ (g)+2CHC13 (9) 2 HCl(g) + 2CC1₂ (9) There will be very little Cl₂ and CHCl3. There will be very little HCI and CCI. Neither of the above is true. x = 0 x = 0

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**Educational Website Content: Equilibrium Constants in Chemical Reactions**

**Topic: Using the General Properties of Equilibrium Constants**

---

**Description:**

At a certain temperature, the equilibrium constant \( K \) for the following reaction is 0.83:

\[ \text{Cl}_2(g) + \text{CHCl}_3(g) \rightleftharpoons \text{HCl}(g) + \text{CCl}_4(g) \]

**Instruction:**
Use this information to complete the following table.

### Problem Scenario:

Suppose a 38 L reaction vessel is filled with 2.0 mol of \(\text{Cl}_2\) and 2.0 mol of \(\text{CHCl}_3\). What can you say about the composition of the mixture in the vessel at equilibrium?

- **Choices:**
  - \( \quad \) There will be very little \(\text{Cl}_2\) and \(\text{CHCl}_3\).
  - \( \quad \) There will be very little \(\text{HCl}\) and \(\text{CCl}_4\).
  - \( \quad \) Neither of the above is true.

### Equilibrium Constant Calculations:

1. **For the reaction:**
   \[
   \text{HCl}(g) + \text{CCl}_4(g) \rightleftharpoons \text{Cl}_2(g) + \text{CHCl}_3(g)
   \]
   What is the equilibrium constant? Be sure your answer has the correct number of significant digits.
   
   \( K = \_\_\_\_\_\_\_ \)

2. **For the reaction:**
   \[
   2 \text{Cl}_2(g) + 2 \text{CHCl}_3(g) \rightleftharpoons 2 \text{HCl}(g) + 2 \text{CCl}_4(g)
   \]
   What is the equilibrium constant? Be sure your answer has the correct number of significant digits.
   
   \( K = \_\_\_\_\_\_\_ \)

---

This problem is designed to help students understand the application of equilibrium constants in determining the direction and composition of a chemical reaction at equilibrium. By solving the given scenarios, students will reinforce their understanding of dynamic equilibrium in gaseous systems.
Transcribed Image Text:**Educational Website Content: Equilibrium Constants in Chemical Reactions** **Topic: Using the General Properties of Equilibrium Constants** --- **Description:** At a certain temperature, the equilibrium constant \( K \) for the following reaction is 0.83: \[ \text{Cl}_2(g) + \text{CHCl}_3(g) \rightleftharpoons \text{HCl}(g) + \text{CCl}_4(g) \] **Instruction:** Use this information to complete the following table. ### Problem Scenario: Suppose a 38 L reaction vessel is filled with 2.0 mol of \(\text{Cl}_2\) and 2.0 mol of \(\text{CHCl}_3\). What can you say about the composition of the mixture in the vessel at equilibrium? - **Choices:** - \( \quad \) There will be very little \(\text{Cl}_2\) and \(\text{CHCl}_3\). - \( \quad \) There will be very little \(\text{HCl}\) and \(\text{CCl}_4\). - \( \quad \) Neither of the above is true. ### Equilibrium Constant Calculations: 1. **For the reaction:** \[ \text{HCl}(g) + \text{CCl}_4(g) \rightleftharpoons \text{Cl}_2(g) + \text{CHCl}_3(g) \] What is the equilibrium constant? Be sure your answer has the correct number of significant digits. \( K = \_\_\_\_\_\_\_ \) 2. **For the reaction:** \[ 2 \text{Cl}_2(g) + 2 \text{CHCl}_3(g) \rightleftharpoons 2 \text{HCl}(g) + 2 \text{CCl}_4(g) \] What is the equilibrium constant? Be sure your answer has the correct number of significant digits. \( K = \_\_\_\_\_\_\_ \) --- This problem is designed to help students understand the application of equilibrium constants in determining the direction and composition of a chemical reaction at equilibrium. By solving the given scenarios, students will reinforce their understanding of dynamic equilibrium in gaseous systems.
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