7. Given the following equilibrium systems, note the direction the equilibrium no change] when the named "stress" is applied. 2 NH3(g) + 92.5 kJ N2 (g) + 3 H2 (g) Equilibrium Shift a 1 2 3 4 5 6 7 Stress Remove N2 (g) Add NH3 (9) Remove H2(g) Remove NH3 (g) Add O2 (g) Decrease Pressure Add Heat

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**Educational Website Content: Understanding Equilibrium Shifts**

**Equilibrium Reaction:**

\[ 2 \text{NH}_3(g) + 92.5 \text{kJ} \rightleftharpoons \text{N}_2(g) + 3 \text{H}_2(g) \]

**Instructions:**

Given the following equilibrium system, note the direction the equilibrium will shift (\[ \rightarrow \] for right, \[ \leftarrow \] for left, NC for no change) when the named "stress" is applied.

**Table of Stresses and Equilibrium Shifts:**

| # | Stress               | Equilibrium Shift |
|---|----------------------|-------------------|
| 1 | Remove N₂(g)         |                   |
| 2 | Add NH₃(g)           |                   |
| 3 | Remove H₂(g)         |                   |
| 4 | Remove NH₃(g)        |                   |
| 5 | Add O₂(g)            |                   |
| 6 | Decrease Pressure    |                   |
| 7 | Add Heat             |                   |

**Analysis:**

Students are prompted to determine how the equilibrium position of the given reaction will shift in response to various stresses. The principles of Le Chatelier's Principle can be applied here to predict which direction (right, left, or no change) the equilibrium will shift based on the changes implemented, such as changes in concentration, pressure, and temperature.
Transcribed Image Text:**Educational Website Content: Understanding Equilibrium Shifts** **Equilibrium Reaction:** \[ 2 \text{NH}_3(g) + 92.5 \text{kJ} \rightleftharpoons \text{N}_2(g) + 3 \text{H}_2(g) \] **Instructions:** Given the following equilibrium system, note the direction the equilibrium will shift (\[ \rightarrow \] for right, \[ \leftarrow \] for left, NC for no change) when the named "stress" is applied. **Table of Stresses and Equilibrium Shifts:** | # | Stress | Equilibrium Shift | |---|----------------------|-------------------| | 1 | Remove N₂(g) | | | 2 | Add NH₃(g) | | | 3 | Remove H₂(g) | | | 4 | Remove NH₃(g) | | | 5 | Add O₂(g) | | | 6 | Decrease Pressure | | | 7 | Add Heat | | **Analysis:** Students are prompted to determine how the equilibrium position of the given reaction will shift in response to various stresses. The principles of Le Chatelier's Principle can be applied here to predict which direction (right, left, or no change) the equilibrium will shift based on the changes implemented, such as changes in concentration, pressure, and temperature.
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