Question: Solve problem 3.2 below id swers too seriou Exercise 3.2: Equilibrium and linearly independent reactions initial gas-phase compositio K2 = 2.57 Solve the two non

Solve problem 3.2 below

Solve problem 3.2 below id swers too seriou Exercise 3.2: Equilibrium andlinearly independent reactions initial gas-phase compositio K2 = 2.57 Solve the two

id swers too seriou Exercise 3.2: Equilibrium and linearly independent reactions initial gas-phase compositio K2 = 2.57 Solve the two non available, you can use trial a (aWhat is the equilibrium gas- initial gas-phase compositio ki k-1 cis - 2 - butene Butene isomerization reactions are shown below. 1 - butene YA = 0.62)? 1 - butene k2 trans-2-butene K-2 Exercise 3.4: Temperature effe Hexane can equilibrate to methyl-s cording to 1- butene k3 isobutene k-3 k4 trans-2-butene k-4 ki hexane k_ cis - 2 - butene kz hexane isobutene k5 cis - 2 - butene k_5 The Gibbs energy of formation of the components at 400 K are (18) Components AGF (kcal/mol) 1-butene 23.10 cis-2-butene 21.94 trans-2-butene 21.33 isobutene 20.23 Component n-hexane methylcyclopentane 2-methylpentane hydrogen in which AH500 K and AG600 K are th of formation of the compounds at 6 K 99 ium 3.7 Exercises (a) Determine the minimum number of reactions that are needed to calculate the equilibrium composition of the butenes. aper- #b) Set up the linear algebra problem to determine the equilibrium extents of the reactions. What assumptions have you made? Xic ) Compute the equilibrium composition at 400 K and 1.0 atm pressure starting from pure 1-butene. (d) Why is isobutene the predominate butene formed? = Exercise 33. More than one reaction

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