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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
Molecular Nature of S: Thermal Entropy (of the Einstein Solid) 50.0 2 04.02 The Microscopic View of Entropy
Principles of Corresponding States(10min) 50.0 8 07.02 Corresponding States
Wilson's model concepts (2:44) 49.2 13 13.02 - Wilson's Equation
Departure Function Overview ( 49.2 13 08.01 - The Departure Function Pathway
Derivative Toolbox 49.1 11 06.2 Derivative Relations
The Flory and Flory-Huggins Models (7:05) 49.1 11 12.04 - The Flory-Huggins Model
Molecular Interactions:Macro To Nano (8min) 48.9 9 07.09 -The Molecular Basis of Equations of State: Concepts and Notation
LLE Calculations: UNIFAC 48.0 10 14.09 - Numerical procedures for binary, ternary LLE
Hints for Generating LLE Envelopes 48.0 5 14.07 Plotting Ternary LLE Data
Rankine vs. Carnot: LearnChemE 47.5 8 05.2 - The Rankine cycle

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

Prentice-Hall web site.