The Thermophysical Properties of Metallic Liquids Volume 1 Fundamentals 1st Edition by Takamichi Iida, Roderick IL Guthrie – Ebook PDF Instant Download/Delivery: 0198729839, 9780198729839
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Product details:
ISBN 10: 0198729839
ISBN 13: 9780198729839
Author: Takamichi Iida, Roderick IL Guthrie
The Thermophysical Properties of Metallic Liquids Volume 1 Fundamentals 1st Table of contents:
1. An Introductory Description of Metallic Liquids
1.1 Introduction
1.2 Preliminary to Studies of Metallic Liquids
1.3 Approaches to the Liquid State
1.4 Well-Known, Representative Models for the Thermophysical Properties of Liquid Metals
1.5 Methods for Assessment of Models/Equations
1.6 Electron Configuration and the Periodic Table of the Elements
1.7 Other Important Matters in Studying Metallic Liquids
References
2. Structure and Pair Potential Energy
2.1 Introduction
2.2 Distribution Functions and Pair Potentials
2.3 The Structure of Liquid Metallic Elements
2.4 The Structure of Liquid Alloys
References
3. Density
3.1 Introduction
3.2 Two Categories of Thermophysical State Properties
3.3 Volume Change on Melting
3.4 Theoretical, Semi-Empirical, and Empirical Analyses of Liquid Density
3.5 Models for the Temperature Dependence of the Density of Liquid Metallic Elements, and their Assessment
3.6 Methods of Density Measurement
3.7 Experimental Data for the Density and Molar Volume of Metallic Liquids
References
4. Thermodynamic Properties
4.1 Evaporation Enthalpy of Liquid Elements
4.2 Vapour Pressure of Liquid Metallic Elements
4.3 Heat Capacity of Liquid Metallic Elements
References
5. Velocity of Sound
5.1 Introduction
5.2 Thermodynamic Relationship between Sound Velocity and Compressibility
5.3 Theoretical Equations for the Velocity of Sound in Liquid Metallic Elements
5.4 Semi-Empirical Models for the Velocity of Sound in Liquid Metallic Elements
5.5 Equations for the Velocity of Sound in Terms of New Dimensionless Parameters ξE and ξT
5.6 Assessment of Sound Velocity Models
5.7 Experimental Sound Velocity Data
References
6. Surface Tension
6.1 Introduction
6.2 Theoretical Equations and Models for the Surface Tension of Liquids
6.3 Semi-Empirical Equations for the Surface Tension of Liquid Metallic Elements
6.4 Equations for the Surface Tension in Terms of New Dimensionless Parameters ξ₁/₂ E and ξ₁/₂ T
6.5 Temperature Coefficients of the Surface Tension of Liquid Metallic Elements
6.6 Assessment of Surface Tension Models
6.7 Adsorption of Solutes on Liquid Metallic Surfaces
6.8 Equations for the Surface Tension of Binary Liquid Mixtures
6.9 Methods of Surface Tension Measurement
6.10 Experimental Data for the Surface Tension of Liquid Metallic Elements
References
7. Viscosity
7.1 Introduction
7.2 Theoretical Equations for Viscosity
7.3 Semi-Empirical or Semi-Theoretical Equations for Viscosity
7.4 Viscosity Equation in Terms of a New Dimensionless Parameter ξ₁/₂ T
7.5 Temperature Dependence of Viscosity
7.6 Assessment of Viscosity Models
7.7 Viscosity of Liquid Alloys
7.8 Methods of Viscosity Measurement
7.9 Determination of Viscosity Using the Oscillating Vessel Method
7.10 Experimental Data for the Viscosity of Liquid Metallic Elements
References
8. Diffusion
8.1 Introduction
8.2 Theoretical Equations for Self-Diffusivity
8.3 Relationship between Viscosity and Self-Diffusivity
8.4 Temperature Dependence of Self-Diffusivity
8.5 Assessment of Self-Diffusivity Equations/Models
8.6 Solute Diffusion in Liquid Metals
8.7 Methods of Self-Diffusivity Measurement
8.8 Experimental Data for the Self-Diffusivity in Liquid Metallic Elements
References
9. Electrical and Thermal Conductivity
9.1 Introduction
9.2 Theoretical Equations for the Electrical and Thermal Conductivities of Metallic Liquids
9.3 Relationship between Electrical Conductivity and Thermal Conductivity of Metallic Liquids: the Wiedemann-Franz Law
9.4 Methods of Electrical Conductivity/Resistivity and Thermal Conductivity Measurement
9.5 Experimental Data for the Electrical Resistivity and Thermal Conductivity of Metallic Liquids
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Tags: Takamichi Iida, Roderick IL Guthrie, Thermophysical Properties


