Uploaded April 2024 | Updated September 2026, 2 weeks ago
Organized by textbook: learncheme.com Applies the steady-state approximation to a chain growth polymerization to determine how the rate of reaction depends on initiator and monomer concentrations. Made by faculty at the University of Colorado Boulder, Department of Chemical and 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 Applies the steady-state approximation to a chain growth polymerization to determine how the rate of reaction depends on initiator and monomer concentrations. Made by faculty at the University of Colorado Boulder, Department of Chemical and 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










