Progress in International Research on Thermodynamic and Transport Properties

Progress in International Research on Thermodynamic and Transport Properties
Author: Eric F. Lype
Publisher: Academic Press
Total Pages: 773
Release: 2013-10-22
Genre: Technology & Engineering
ISBN: 1483225860

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Progress in International Research on Thermodynamic and Transport Properties covers the proceedings of the 1962 Second Symposium by the same title, held at Purdue University and the Thermophysical Properties Research Center. This symposium brings together theoretical and experimental research works on the thermodynamic and transport properties of gases, liquids, and solids. This text is organized into nine parts encompassing 68 chapters that cover topics from thixotropy to molecular orbital calculations. The first three parts review papers on theoretical, experimental, and computational studies of the various aspects of thermodynamic properties. These parts discuss the principles of phase equilibria, throttling, volume heat capacity, steam, volumetric behavior, enthalpy, and density. The subsequent part highlights the theoretical evaluations of transport properties, such as viscosity, diffusion, and conductivity, as well as the transport processes. These topics are followed by surveys of the theories in intermolecular forces and their applications. Other parts consider the measurement of thermal conductivity, viscosity, and radiation. The final parts examine the properties of ionized gases and non-Newtonian fluids. This book will prove useful to mechanical and chemical engineers.

NASA Technical Note

NASA Technical Note
Author:
Publisher:
Total Pages: 464
Release: 1962
Genre:
ISBN:

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Effect of Dissociation on Thermodynamic Properties of Pure Diatomic Gases

Effect of Dissociation on Thermodynamic Properties of Pure Diatomic Gases
Author: Harold William Woolley
Publisher:
Total Pages: 24
Release: 1955
Genre: Diatomic molecules
ISBN:

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A graphical method for obtaining charts for the thermodynamic properties enthalpy and entropy for the equilibrium mixture of atoms and diatomic molecules for pure gaseous elements is described. The procedure is equivalent in principle to numerical calculation based on the same fundamental data, but gives directly the location of points of intersection of curves for constant values of the compressibility factor PV/RT. In combination, the resulting graphs for enthalpy and entropy are equivalent to Mollier's diagrams for the gaseous fluid in the dissociation region. Results are given for hydrogen H2, oxygen O2, and nitrogen N2.