Instructional Video6:21
Catalyst University

Real Gas Behavior | Principle of Corresponding States [Example #2]

Higher Ed
In this video, I work a second example problem using the principle of corresponding states.<b<br/>r/>

-Find the temperature and pressure at which a gas b<br/>ehaves as another gas.
Instructional Video8:06
Catalyst University

Real Gas Behavior | The Hard Shell Model [Example #2]

Higher Ed
In this video, we work with the Hard Shell gas mode to calculate the work done by an expanding gas. Uses integration calculus.
Instructional Video6:26
Catalyst University

Real Gas Behavior | Determine the Boyle Temperature [Example #1]

Higher Ed
In this video, we calculate the Boyle Temperature of a real gas using the compression factor formula.<br/>
Instructional Video14:27
Catalyst University

Real Gas Behavior | The Basics of Fugacity

Higher Ed
1) What is fugacity? (analogy to activity)<br/>
2) What is it <br/>useful for?
3) What can it tell us ab<br/>out real gas behavior?
Instructional Video7:23
Catalyst University

Real Gas Behavior | Fugacity & Equilibrium

Higher Ed
Fugacity can be related to the equilibrium constant just like pressure. In this video, we derive an expression for the Kf (fugacity equilibrium constant) using Kp and the fugacity coefficients.
Instructional Video4:56
Catalyst University

Real Gas Behavior | The Compression Factor (Z) [Example #2]

Higher Ed
Here, I work a second example in which we calculate a real gas's compression factor.<br/>