3) Calculate the equilibrium constant K for reaction N₂O₂(g) → NO₂ (g) 2 at 298 K. C

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**Equilibrium Constant Calculation for a Gaseous Reaction**

**Problem Statement:**

Calculate the equilibrium constant \( K \) for the reaction:

\[ \text{N}_2\text{O}_4 (g) \rightarrow \text{NO}_2 (g) \]

at 298 K.

**Hint:** Ensure the reaction is balanced before proceeding with the calculations.

---

In this problem, you are tasked with calculating the equilibrium constant \( K \) for a reaction involving gases. The given reaction involves the decomposition of dinitrogen tetroxide (\(\text{N}_2\text{O}_4\)) to nitrogen dioxide (\(\text{NO}_2\)). To determine \( K \), the reaction must first be balanced to reflect the stoichiometry accurately.

Understanding the equilibrium constant is essential as it provides insights into the extent of reaction and the relative concentrations of reactants and products at equilibrium. Consider initial concentrations, the change in concentration as the system reaches equilibrium, and apply the equilibrium expression to find \( K \) at the specified temperature of 298 K.
Transcribed Image Text:**Equilibrium Constant Calculation for a Gaseous Reaction** **Problem Statement:** Calculate the equilibrium constant \( K \) for the reaction: \[ \text{N}_2\text{O}_4 (g) \rightarrow \text{NO}_2 (g) \] at 298 K. **Hint:** Ensure the reaction is balanced before proceeding with the calculations. --- In this problem, you are tasked with calculating the equilibrium constant \( K \) for a reaction involving gases. The given reaction involves the decomposition of dinitrogen tetroxide (\(\text{N}_2\text{O}_4\)) to nitrogen dioxide (\(\text{NO}_2\)). To determine \( K \), the reaction must first be balanced to reflect the stoichiometry accurately. Understanding the equilibrium constant is essential as it provides insights into the extent of reaction and the relative concentrations of reactants and products at equilibrium. Consider initial concentrations, the change in concentration as the system reaches equilibrium, and apply the equilibrium expression to find \( K \) at the specified temperature of 298 K.
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