Problem 1
The gas-phase isomerisation between cis-but-2-ene and trans-but-2-ene is reversible and unimolecular, with equilibrium constant and forward/reverse rate constants and : \ce{cis-but-2-ene <=>[k_1k_{-1}] trans-but-2-ene}. Initially the system contains only cis-but-2-ene at concentration . (a) Write the differential rate equation for . (b) Derive the expression for the concentration ratio as a function of , and . (c) When , identify which of the following linear plots is valid: (H-1) vs ; (H-2) vs ; (H-3) vs ; (H-4) vs . (d) At , and . Calculate the time (in hours) required for cis-but-2-ene to convert to 30 % of its maximum equilibrium conversion. (e) Calculate the percentage of trans-but-2-ene in the mixture after 10 hours.
Step 1 of 5: Differential rate equation
Analysis
Conservation of mass gives ; substitution into the forward-reverse balance gives a standard linear first-order differential equation in .