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Introductory Chemical Engineering Thermodynamics, 2nd ed.

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Screencast Summary

This page summarizes screencasts in a concise table. The default is to show the top-rated screencasts, but the dropdown filters are provided to permit sorting by textbook section, rating, or number of votes cast.


Screencast Title Avg No. votes Section
General Procedure of Solving for Turbine Efficiency 47.3 11 04.09 Turbine calculations
Chapter 1 Objectives in Review 46.7 9 01.6 Summary
Example 10.1++ Adiabatic Flash Calculation 46.7 3 10.04 - Multicomponent VLE & Raoult's Law Calculations
MAB Model Predictions of the Pxy Phase Diagram 46.7 3 11.02 - Calculations with Activity Coefficients
Using a Macro to Create an Isotherm (Excel) 46.7 3 07.06 Solving The Cubic EOS for Z
The van Laar Equation (5:54) 45.7 14 12.02 - The van Laar Model
Nature of Molecular Parking L 45.0 8 07.11 - The molecular basis of equations of state: analytical theories
Derivative Toolbox 45.0 4 06.2 Derivative Relations
How Distillation Works 44.4 9 10.06 - Relating VLE to Distillation
Enthalpy Departure for vdW EOS 44.0 5 08.05 - Summary of Density Dependent Formulas

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To view the authors' web pages click: J. Richard Elliott, Carl T. Lira

Prentice-Hall web site.