Uploaded January 2026 | Updated September 2026, 1 week ago
Organized by textbook: learncheme.com Demonstrates how to use an interactive simulation that models the behavior of a sealed, 1-L autoclave that initially contains mostly water plus a small volume of air, all at 25 °C and 1.0 bar pressure. The amounts of N2 and O2 dissolved in the water and the pressure in the container are determined as the container is heated. This simulation is located at learncheme.com/simulations/thermodynamics/thermo-2/heating-water-and-air-in-a-sealed-container
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 models the behavior of a sealed, 1-L autoclave that initially contains mostly water plus a small volume of air, all at 25 °C and 1.0 bar pressure. The amounts of N2 and O2 dissolved in the water and the pressure in the container are determined as the container is heated. This simulation is located at learncheme.com/simulations/thermodynamics/thermo-2/heating-water-and-air-in-a-sealed-container
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










