Determine the equilibrium conversion for the isomerization reaction of methylcyclopentane (CH3C-H9) to cyclohexane (C6H₁2) at 298°K. Gibbs energies of formation are given at 298ºK as: Agᵒt.CH3C5H9 = 31.72 [kJ/mol] and Agᵒt.c6H12 = 26.89 [kJ/mol]

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Chapter1: Introduction
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**Problem Statement:**

Determine the equilibrium conversion for the isomerization reaction of methylcyclopentane (CH₃C₅H₉) to cyclohexane (C₆H₁₂) at 298°K. Gibbs energies of formation are given at 298°K as:

\[
\Delta_g^° f_{\text{CH}_3\text{C}_5\text{H}_9} = 31.72 \, \text{kJ/mol} 
\]

\[
\Delta_g^° f_{\text{C}_6\text{H}_{12}} = 26.89 \, \text{kJ/mol} 
\]
Transcribed Image Text:**Problem Statement:** Determine the equilibrium conversion for the isomerization reaction of methylcyclopentane (CH₃C₅H₉) to cyclohexane (C₆H₁₂) at 298°K. Gibbs energies of formation are given at 298°K as: \[ \Delta_g^° f_{\text{CH}_3\text{C}_5\text{H}_9} = 31.72 \, \text{kJ/mol} \] \[ \Delta_g^° f_{\text{C}_6\text{H}_{12}} = 26.89 \, \text{kJ/mol} \]
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