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International thermodynamic tables of the fluid state. 4, Helium

Author: S Angus; K M de Reuck; R D McCarty; International Union of Pure and Applied Chemistry. Physical Chemistry Division.
Publisher: Oxford, England : Pergamon Press, 1977. ©1977
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
International Thermodynamic Tables of the Fluid State Helium-4 presents the IUPAC Thermodynamic Tables for the thermodynamic properties of helium. The IUPAC Thermodynamic Tables Project has therefore encouraged the critical analysis of the available thermodynamic measurements for helium and their synthesis into tables. This book is divided into three chapters. The first chapter discusses the experimental results and  Read more...
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Genre/Form: Electronic books
Tables
Additional Physical Format: Print version:
International thermodynamic tables of the fluid state. 4, Helium.
Oxford, England : Pergamon Press, ©1977
xxv, 265 pages
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: S Angus; K M de Reuck; R D McCarty; International Union of Pure and Applied Chemistry. Physical Chemistry Division.
ISBN: 9781483280684 1483280683
OCLC Number: 896845308
Description: 1 online resource (293 pages) : illustrations
Contents: Front Cover; International Thermodynamic Tables of the Fluid State Helium-4; Copyright Page; Table of Contents ; List of Figures; Tables in Text; Preface; Introduction; Symbols; Units and Conversion Factors; Chapter 1. Experimental Results; 1.1 Temperature Scale; 1.2 The Phase Diagram; 1.3 Invariant Points; 1.4 Two-phase Regions; 1.5 Single-phase Region; 1.6 Ideal Gas Properties; Chapter 2. The Equation of State; 2.1 The Estimation of the Second Virial Coefficient; 2.2 The Estimation of the Coefficients for Equation (14A); 2.3 The Estimation of the Coefficients for Equation (14B). 2.4 The Estimation of the Coefficients for Equation (14C)2.5 The Critical Region; Chapter 3. The IUPAC Tables; 3.1 Physical Constants; 3.2 Construction of the Tables; 3.3 Limits of the Tables; 3.4 Use and Accuracy of the Tables; 3.5 Recommendations for Improvement of the Tables; Acknowledgements; References; Ideal Gas Properties; Table 1. Molar Entropy and Enthalpy Temperature Range, 2.5 K to 1400 K; Zero-pressure Properties; Table 1. Isothermal Enthalpy-Pressure Coefficient, Second Virial Coefficient and Speed of Sound Temperature Range, 2.5 K to 1400 K; Single-phase Properties. Table 2. Molar Volume, Entropy, Enthalpy and Isobaric Heat Capacity Pressure Range, 0.001 MPa to 70 MPa 0.001 MPa to 25 MPa Temperature Range, 2.5 K to 450 K; 500 K to 1400 K; Table 3. Density, Compression Factor, Fugacity/Pressure Ratio and Speed of Sound Pressure Range, 0.001 MPa to 70 MPa; 0.001 MPa to 25MPa Temperature Range, 2.5 K to 450 K; 500 K to 1400 K; Table 4. Pressure, Molar Entropy, Internal Energy and Isochoric Heat Capacity Density Range, Wmolm3 to 70000molm'3 Temperature Range, 2.5 K to 1400 K; Properties on the Saturation Curve. Table 5. Pressure, Molar Volume, Enthalpy and Entropy of Gas and Liquid Phases Temperature Range, TL (2.177 3 K) to Tc (5.201 4 K)Table 6. Temperature, Molar Volume, Enthalpy and Entropy of Gas and Liquid Phases Pressure Range, PL (0.005040 MPa) to Pc (0.22746 MPa); Properties on the Melting Curve from the (a-y-I) Triple Point to the (a-0-1) Triple Point; Table 7. Pressure, Molar Volume, Entropy and Enthalpy of the Liquid Phase Temperature Range, 1.777 8 K to 14.9 K; Table 8. Temperature, Molar Volume, Entropy and Enthalpy of the Liquid Phase Pressure Range, 3.043 MPa to 110 MPa. Properties on the Lambda CurveTable 9. Pressure and Molar Volume as a Function of Temperature Temperature Range, Tv (1.767 8 K) to TL (2.177 3 K); Table 10. Temperature and Molar Volume as a Function of Pressure Pressure Range, PL (0.005040 MPa) to Pv (3.013 MPa).
Responsibility: edited and compiled by S. Angus, K.M. de Reuck, R.D. McCarty.

Abstract:

International Thermodynamic Tables of the Fluid State Helium-4 presents the IUPAC Thermodynamic Tables for the thermodynamic properties of helium. The IUPAC Thermodynamic Tables Project has therefore encouraged the critical analysis of the available thermodynamic measurements for helium and their synthesis into tables. This book is divided into three chapters. The first chapter discusses the experimental results and compares with the equations used to generate the tables. These equations are supplemented by a vapor pressure equation, which represents the 1958 He-4 scale of temperature that is.

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