Uploaded January 2026 | Updated September 2026, 2 weeks ago
Organized by textbook: learncheme.com Demonstrates how to use an interactive simulation that calculates the equilibrium amounts when solid calcium carbonate (CaCO3) decomposes into solid calcium oxide (CaO) and gaseous carbon dioxide (CO2) in a constant-volume container at high temperatures. Carbon dioxide is assumed to be an ideal gas, and the two solids are assumed to be in separate phases. This simulation is located at learncheme.com/simulations/thermodynamics/thermo-2/heterogeneous-chemical-equilibrium-with-calcium-carbonate
Made by faculty at the University of Colorado Boulder, Department of Chemical & Biological Engineering.
Check out our Thermodynamics playlists here: youtube.com/user/LearnChemE/playlists?view=50&sort=dd&shelf_id=11 Also see our website for screencasts organized by textbook: learncheme.com/screencasts/thermodynamics Interactive Thermodynamics simulations are here: learncheme.com/simulations/thermodynamics/thermo-1
Organized by textbook: learncheme.com Demonstrates how to use an interactive simulation that calculates the equilibrium amounts when solid calcium carbonate (CaCO3) decomposes into solid calcium oxide (CaO) and gaseous carbon dioxide (CO2) in a constant-volume container at high temperatures. Carbon dioxide is assumed to be an ideal gas, and the two solids are assumed to be in separate phases. This simulation is located at learncheme.com/simulations/thermodynamics/thermo-2/heterogeneous-chemical-equilibrium-with-calcium-carbonate
Made by faculty at the University of Colorado Boulder, Department of Chemical & Biological Engineering.
Check out our Thermodynamics playlists here: youtube.com/user/LearnChemE/playlists?view=50&sort=dd&shelf_id=11 Also see our website for screencasts organized by textbook: learncheme.com/screencasts/thermodynamics Interactive Thermodynamics simulations are here: learncheme.com/simulations/thermodynamics/thermo-1










