TUTOR Determining the Equilibrium Constant I Carbon tetrachloride can be produced by the following reaction: CS₂(g) + 3 Cl₂(g) S₂Cl₂(g) + CCl4(9) K= In an experiment, 0.120 mol of CS₂ and 0.360 mol of Cl₂ were placed in a 1.00-L flask at a particular temperature. After equilibrium has been achieved, the mixture contains 0.080 mol CCI4. Calculate the value of K under the experimental conditions. Submit [Reviow Topics Submit Answer Show Approach Show Tutor Steps Retry Entire Group [Refrances) 9 more group attempts remaining

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**Determining the Equilibrium Constant**

Carbon tetrachloride can be produced by the following reaction:

\[ \text{CS}_2(\text{g}) + 3 \text{Cl}_2(\text{g}) \rightleftharpoons \text{S}_2\text{Cl}_2(\text{g}) + \text{CCl}_4(\text{g}) \]

In an experiment, 0.120 mol of CS₂ and 0.360 mol of Cl₂ were placed in a 1.00-L flask at a particular temperature. After equilibrium has been achieved, the mixture contains 0.080 mol CCl₄. Calculate the value of \( K \) under the experimental conditions.

- \( K = \ \)

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Transcribed Image Text:**Determining the Equilibrium Constant** Carbon tetrachloride can be produced by the following reaction: \[ \text{CS}_2(\text{g}) + 3 \text{Cl}_2(\text{g}) \rightleftharpoons \text{S}_2\text{Cl}_2(\text{g}) + \text{CCl}_4(\text{g}) \] In an experiment, 0.120 mol of CS₂ and 0.360 mol of Cl₂ were placed in a 1.00-L flask at a particular temperature. After equilibrium has been achieved, the mixture contains 0.080 mol CCl₄. Calculate the value of \( K \) under the experimental conditions. - \( K = \ \) **Buttons:** - Submit - Show Approach - Show Tutor Steps - Submit Answer - Retry Entire Group (9 more group attempts remaining) *Note: This section does not contain any graphs or diagrams.*
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