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Thermal Conductivity 20

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Cover of 'Thermal Conductivity 20'

Table of Contents

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    Book Overview
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    Chapter 1 Load-Bearing Evacuated Fibrous Superinsulations — Improvements with Peg-Support and Metal-Coated Fibers
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    Chapter 2 Modelling of Transient Tests to Determine Thermal Properties of Fiberglass Insulations
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    Chapter 3 Apparent Thermal Conductivity of High Density and Low Density Fiberglass Insulations
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    Chapter 4 Thermal Conductivity of PVC Foams for Spacecraft Applications
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    Chapter 5 Thermophysical Property Measurement in Building Insulation Materials Using a Spherically-Shaped, Self-Heated Probe
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    Chapter 6 Theory of Lorenz Ratio of Metals and Alloys
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    Chapter 7 Changes in Thermal Diffusivity During Heating of PM Powder Compacts
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    Chapter 8 The Experimental Study of Transport and Thermodynamic Properties of Nickel
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    Chapter 9 On Material Changes and Heating Rate Dependent Properties
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    Chapter 10 Thermal Diffusivity and Thermal Conductivity of Carbon Materials for Tokamak Limiters
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    Chapter 11 Thermal Properties of Mullite-Cordierite Composites
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    Chapter 12 Effect of Processing Conditions on Thermal Conduction in Alumina
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    Chapter 13 Role of Structure and Composition in the Heat Conduction Behavior of Silicon Carbide
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    Chapter 14 Thermal Conductivity Measurements of Ceramic Nuclear Fuels by Laser Flash Method
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    Chapter 15 Thermal Conductivity of Gallium Arsenide at High Temperature
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    Chapter 16 Measurement of Thermal Conductivity and Thermal Diffusivity of Fluids Over a Wide Range of Densities
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    Chapter 17 Thermal Conductivity of Liquid Water at High Pressures
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    Chapter 18 Radiation Correction and Onset of Free Convection in the Transient Line-Source Technique (Experimental Observations in Fluids)
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    Chapter 19 Thermal Conductivity of Liquids in the Reduced Temperature Range 0.3 to 0.8 From Saturation Line to 350 MPa
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    Chapter 20 A Modified General Corresponding States Equation for Polar Liquid Mixtures
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    Chapter 21 Measurement of Anisotropic Behavior of Thermal Diffusivity of Polymers
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    Chapter 22 Thermal Conductivity of Amorphous Films
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    Chapter 23 Phonon Images and Phonon Conduction in Trigonal Crystals
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    Chapter 24 Thermal Conductivity of Wood-Based Panels
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    Chapter 25 Phonon Scattering and Thermal Resistance Due to Spin Disorder
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    Chapter 26 Apparent Thermal Conductivity of Low Density Concrete Obtained with a Radial-Heat-Flow Apparatus
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    Chapter 27 Thermal Conductivity Measurements with Optical Fiber Sensors
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    Chapter 28 Effect of Experimental Variables on Flash Thermal Diffusivity Data Analysis
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    Chapter 29 Sequential Estimation of Thermal Diffusivity for Flash Tests
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    Chapter 30 Improvement of Laser Beam Profile Using Optical Fiber for Laser Pulse Thermal Diffusivity Measurements
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    Chapter 31 The Automation of a Laser Flash Diffusivity Apparatus
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    Chapter 32 Electronic Flash: A Rapid Method for Measuring the Thermal Conductivity and Specific Heat of Dielectric Materials
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    Chapter 33 A Computerized Thermal Diffusivity Apparatus
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    Chapter 34 Experiences Gained While Examining Thermophysical Properties of State-of-the-Art Materials
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    Chapter 35 On the Application of the Laser Flash Method for Different Materials
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    Chapter 36 A Comparative Heat Flow Meter Measurement in Steady and Variable Heat Transfer Conditions
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    Chapter 37 Transient Measurements of Insulation Materials
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    Chapter 38 Thermal Diffusivity and Conductivity of Composites with Interfacial Thermal Contact Resistance
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    Chapter 39 Heat Transfer Through Moist Porous Media
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    Chapter 40 The Thermal Conductivity of Beds of Spheres
Attention for Chapter 6: Theory of Lorenz Ratio of Metals and Alloys
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Chapter title
Theory of Lorenz Ratio of Metals and Alloys
Chapter number 6
Book title
Thermal Conductivity 20
Published by
Springer, Boston, MA, January 1989
DOI 10.1007/978-1-4613-0761-7_6
Book ISBNs
978-1-4612-8069-9, 978-1-4613-0761-7
Authors

P. G. Klemens, Klemens, P. G.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 2 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 50%
Unknown 1 50%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 1 50%
Student > Doctoral Student 1 50%
Readers by discipline Count As %
Materials Science 1 50%
Engineering 1 50%