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Chemistry
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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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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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**Understanding Equilibrium Constants and Reaction Compositions**

At a certain temperature, the equilibrium constant \( K \) for the following reaction is 0.52:

\[ \text{H}_2(g) + \text{I}_2(g) \leftrightharpoons 2\text{HI}(g) \]

Use this information to complete the following table.

**Scenario Analysis:**

**Suppose a 19. L reaction vessel is filled with 1.9 mol of HI. What can you say about the composition of the mixture in the vessel at equilibrium?**

- \(\; \)⚪ There will be very little H₂ and I₂.
- \(\; \)⚪ There will be very little HI.
- \(\; \)⚪ Neither of the above is true.

**Equilibrium Constant Calculation:**

1. **For the reaction:**

\[ 2 \text{HI}(g) \leftrightharpoons \text{H}_2(g) + \text{I}_2(g) \]

What is the equilibrium constant for this reaction? Round your answer to 2 significant digits.

\[ K = \_\_\_\_\_\_\_\_\_ \]

2. **For the reaction:**

\[ 2 \text{H}_2(g) + 2 \text{I}_2(g) \leftrightharpoons 4 \text{HI}(g) \]

What is the equilibrium constant for this reaction? Round your answer to 2 significant digits.

\[ K = \_\_\_\_\_\_\_\_\_ \]

**Examining the provided graphs or diagrams:**

Since there are no graphs or diagrams provided in this scenario, the explanation focuses solely on the given text content. The analysis here moves forward with the calculation of equilibrium constants based on the given reactions and conditions.
Transcribed Image Text:**Understanding Equilibrium Constants and Reaction Compositions** At a certain temperature, the equilibrium constant \( K \) for the following reaction is 0.52: \[ \text{H}_2(g) + \text{I}_2(g) \leftrightharpoons 2\text{HI}(g) \] Use this information to complete the following table. **Scenario Analysis:** **Suppose a 19. L reaction vessel is filled with 1.9 mol of HI. What can you say about the composition of the mixture in the vessel at equilibrium?** - \(\; \)⚪ There will be very little H₂ and I₂. - \(\; \)⚪ There will be very little HI. - \(\; \)⚪ Neither of the above is true. **Equilibrium Constant Calculation:** 1. **For the reaction:** \[ 2 \text{HI}(g) \leftrightharpoons \text{H}_2(g) + \text{I}_2(g) \] What is the equilibrium constant for this reaction? Round your answer to 2 significant digits. \[ K = \_\_\_\_\_\_\_\_\_ \] 2. **For the reaction:** \[ 2 \text{H}_2(g) + 2 \text{I}_2(g) \leftrightharpoons 4 \text{HI}(g) \] What is the equilibrium constant for this reaction? Round your answer to 2 significant digits. \[ K = \_\_\_\_\_\_\_\_\_ \] **Examining the provided graphs or diagrams:** Since there are no graphs or diagrams provided in this scenario, the explanation focuses solely on the given text content. The analysis here moves forward with the calculation of equilibrium constants based on the given reactions and conditions.
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