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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
Rankine Example Using Steam.xls 20.0 2 05.2 - The Rankine cycle
Entropy Changes for Ideal Gases 20.0 1 04.03 The Macroscopic View of Entropy
Configurational Energy:Molecular Basis of Quadratic Mixing Rules 20.0 1 12.01 - The van der Waals Perspective for Mixtures
Derivatives of the Helmholtz Departure Function 20.0 1 08.07 - Implementation of Departure Functions
Using XSteam Excel (4:46) (ms 20.0 1 05.2 - The Rankine cycle
Reversibility 02.04 Lost Work Versus Reversibility
Evaporative Cooling 02.16 Unsteady State Open Systems
Visualizing Txy Phase Diagrams in Excel 10.07 - Nonideal Systems
Colligative Properties 18.02 Colligative Properties
Using the NIST Webbook for Thermo Props 04.10 Pumps and Compressors

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

Prentice-Hall web site.