Uploaded January 2026 | Updated September 2026, 2 weeks ago
Organized by textbook: learncheme.com Demonstrates how to use an interactive simulation that mixes ideal gases A and B isothermally by keeping total volume constant or by adding gas A to gas B so final volume is the same as initial volume of gas B. When the partial pressure decreases, entropy increases. This simulation is located at learncheme.com/simulations/thermodynamics/thermo-1/entropy-changes-in-mixing-ideal-gases
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 mixes ideal gases A and B isothermally by keeping total volume constant or by adding gas A to gas B so final volume is the same as initial volume of gas B. When the partial pressure decreases, entropy increases. This simulation is located at learncheme.com/simulations/thermodynamics/thermo-1/entropy-changes-in-mixing-ideal-gases
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










