Uploaded February 2026 | Updated September 2026, 1 week ago
Organized by textbook: learncheme.com Demonstrates how to use an interactive simulation that calculates the partial pressure, catalyst coverages, and reaction rates for the CO oxidation to CO2 on a supported metal catalyst in an isothermal plug flow reactor. This simulation is located at learncheme.com/simulations/kinetics-reactor-design/langmuir-hinshelwood-reaction-in-a-pfr
Made by faculty at the University of Colorado Boulder, Department of Chemical & Biological Engineering.
Check out our Kinetics playlists: youtube.com/@LearnChemE/playlists?view=50&sort=dd&shelf_id=7 Are you using a textbook? Check out our website for screencasts organized by popular textbooks: learncheme.com/screencasts/kinetics-reactor-design Check out our website for interactive kinetics simulations: learncheme.com/simulations/kinetics-reactor-design
Organized by textbook: learncheme.com Demonstrates how to use an interactive simulation that calculates the partial pressure, catalyst coverages, and reaction rates for the CO oxidation to CO2 on a supported metal catalyst in an isothermal plug flow reactor. This simulation is located at learncheme.com/simulations/kinetics-reactor-design/langmuir-hinshelwood-reaction-in-a-pfr
Made by faculty at the University of Colorado Boulder, Department of Chemical & Biological Engineering.
Check out our Kinetics playlists: youtube.com/@LearnChemE/playlists?view=50&sort=dd&shelf_id=7 Are you using a textbook? Check out our website for screencasts organized by popular textbooks: learncheme.com/screencasts/kinetics-reactor-design Check out our website for interactive kinetics simulations: learncheme.com/simulations/kinetics-reactor-design










