N₂H₁(I) + H₂(g) → 2NH3(g) So (J/mol L) 121.2, 130.7, 192.8

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Chapter1: Chemical Foundations
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Calculate ▲S°rxn for the following reaction. the S° for each species is shown below in the reaction

### Reaction and Thermodynamic Information

**Chemical Reaction:**

\[ \text{N}_2\text{H}_4 (l) + \text{H}_2 (g) \rightarrow 2\text{NH}_3 (g) \]

**Standard Entropy Values (S°) in J/mol·K:**

- **N₂H₄ (l):** 121.2
- **H₂ (g):** 130.7
- **NH₃ (g):** 192.8

This chemical equation represents the formation of ammonia (NH₃) gas from liquid hydrazine (N₂H₄) and gaseous hydrogen (H₂). Listed below the equation are the standard entropy values for each substance in the reaction, measured in joules per mole kelvin (J/mol·K).
Transcribed Image Text:### Reaction and Thermodynamic Information **Chemical Reaction:** \[ \text{N}_2\text{H}_4 (l) + \text{H}_2 (g) \rightarrow 2\text{NH}_3 (g) \] **Standard Entropy Values (S°) in J/mol·K:** - **N₂H₄ (l):** 121.2 - **H₂ (g):** 130.7 - **NH₃ (g):** 192.8 This chemical equation represents the formation of ammonia (NH₃) gas from liquid hydrazine (N₂H₄) and gaseous hydrogen (H₂). Listed below the equation are the standard entropy values for each substance in the reaction, measured in joules per mole kelvin (J/mol·K).
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