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Thermal Conductivity of Pure Metals and Alloys

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Cover of 'Thermal Conductivity of Pure Metals and Alloys'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 1.1 General remarks
  3. Altmetric Badge
    Chapter 2 1.2 List of symbols and abbreviations
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    Chapter 3 2.1 Thermal conductivity at 273 - 300 K
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    Chapter 4 Ac - Fe
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    Chapter 5 Ga - Pa
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    Chapter 6 Pb - Ta
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    Chapter 7 Tb - Zr
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    Chapter 8 Ag - Ho
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    Chapter 9 In - Ru
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    Chapter 10 Sc - Zr
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    Chapter 11 2.4 Lorenz ratios of metallic elements at intermediate and high temperatures
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    Chapter 12 2.5 References for 2
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    Chapter 13 3.1.2 Estimation method for alloys
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    Chapter 14 3.1.3 Comments on the presentation of data
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    Chapter 15 3.1.4 References for 3.1
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    Chapter 16 3.2.1.1 Ag-based alloys
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    Chapter 17 3.2.1.2 Al-based alloys
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    Chapter 18 3.2.1.3 Au-based alloys
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    Chapter 19 3.2.1.4 Cr-based alloys
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    Chapter 20 3.2.1.5 Cu-based alloys
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    Chapter 21 3.2.1.6 Fe-based alloys
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    Chapter 22 3.2.1.7 Ni-based alloys
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    Chapter 23 3.2.1.8 Pd-based alloys
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    Chapter 24 3.2.1.9 Sn-based alloys
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    Chapter 25 3.2.1.10 Ti-based alloys
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    Chapter 26 3.2.1.11 Steels
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    Chapter 27 3.2.1.12 Miscellaneous alloys
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    Chapter 28 3.2.2 References for 3.2
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    Chapter 29 3.3.1.1 Ag-based alloys
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    Chapter 30 3.3.1.2 Al-based alloys
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    Chapter 31 3.3.1.3 Au-based alloys
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    Chapter 32 3.3.1.4 Bi-based alloys
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    Chapter 33 Cu-Al - Cu-P
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    Chapter 34 Cu-Pd - Cu-Zn
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    Chapter 35 3.3.1.7 Fe-based alloys
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    Chapter 36 3.3.1.8 K-based-alloys
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    Chapter 37 3.3.1.9 Mg-based alloys
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    Chapter 38 3.3.1.10 Mo-based alloys
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    Chapter 39 3.3.1.12 Nb-based alloys
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    Chapter 40 3.3.1.13 Ni-based alloys
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    Chapter 41 3.3.1.15 Pd-based alloys
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    Chapter 42 3.3.1.16 Pt-based alloys
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    Chapter 43 3.3.1.17 Pu-based alloys
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    Chapter 44 3.3.1.19 Sn-based alloys
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    Chapter 45 3.3.1.20 Ta-based alloys
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    Chapter 46 3.3.1.21 Ti-based alloys
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    Chapter 47 3.3.1.22 U-based alloys
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    Chapter 48 3.3.1.23 W-based alloys
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    Chapter 49 3.3.1.24 Zr-based alloys
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    Chapter 50 3.3.1.25 Miscellaneous alloys
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    Chapter 51 3.3.2 References for 3.3.1
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    Chapter 52 3.3.3.1 Al-based alloys
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    Chapter 53 3.3.3.2 Co-based alloys
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    Chapter 54 3.3.3.3 Cu-based alloys
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    Chapter 55 3.3.3.4 Mg-based alloys
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    Chapter 56 3.3.3.5 Mn-based alloys
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    Chapter 57 3.3.3.6 Nb-based alloys
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    Chapter 58 3.3.3.7 Ni-based alloys
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    Chapter 59 3.3.3.8 Pd-based alloys
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    Chapter 60 3.3.3.10 Ta-based alloys
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    Chapter 61 3.3.3.11 Ti-based alloys
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    Chapter 62 3.3.3.12 U-based alloys
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    Chapter 63 3.3.3.13 W-based alloys
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    Chapter 64 3.3.3.15 Zr-based alloys
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    Chapter 65 3.3.4.2 Fe-Mn-X alloys
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    Chapter 66 3.3.4.3 Fe-Ni-X allgys
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    Chapter 67 3.3.4.5 Unalloyed and low alloyed cast irons
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    Chapter 68 3.3.4.6 High alloyed cast irons
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    Chapter 69 3.3.4.7 Unalloyed steels
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    Chapter 70 3.3.4.8 Low alloyed steels
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    Chapter 71 Cr steels
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    Chapter 72 Cr-Al steels
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    Chapter 73 Cr-Mn steels (see also Mn-Cr steels)
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    Chapter 74 Cr-Mo steels (see also Mo-Cr steels)
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    Chapter 75 Part 1
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    Chapter 76 Part 2
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    Chapter 77 Cr-Si steels
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    Chapter 78 Mn-Cr steels (see also Cr-Mn steels)
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    Chapter 79 Ni-Co steels
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    Chapter 80 Ni-Cr steels (see also Cr-Ni steels)
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    Chapter 81 Mn-Ni steels
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    Chapter 82 W-Co steels
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    Chapter 83 W-Cr steels
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    Chapter 84 W-Mo steels
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    Chapter 85 3.3.5 References for 3.3.3 and 3.3.4
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    Chapter 86 4.1 Introduction
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    Chapter 87 4.2.1 Thermal conductivity of As, Bi and Sb at room temperature
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    Chapter 88 4.2.2 Temperature dependence of thermal conductivity of As, Bi and Sb
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    Chapter 89 4.2.3 Thermal conductivity of low concentration alloys of As, Bi and Sb
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    Chapter 90 4.3.1 Thermal conductivity of graphite at room temperature
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    Chapter 91 4.3.2 Temperature dependence of thermal conductivity of graphite
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    Chapter 92 4.3.3 Thermal conductivity of boron-doped graphite, neutron irradiated graphite, and graphite intercalation compounds
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    Chapter 93 4.4 References for 4
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    Chapter 94 5.1 Introduction
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    Chapter 95 5.2 Data for pure metals and alloys
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    Chapter 96 5.3 References for 5
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Title
Thermal Conductivity of Pure Metals and Alloys
Published by
Springer Berlin Heidelberg, January 1991
DOI 10.1007/b91373
ISBNs
978-3-54-053512-6, 978-3-54-046730-4
Editors

Madelung, O., White, G. K.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 32 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 3%
Unknown 31 97%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 8 25%
Student > Bachelor 5 16%
Other 3 9%
Researcher 3 9%
Professor > Associate Professor 2 6%
Other 4 13%
Unknown 7 22%
Readers by discipline Count As %
Materials Science 14 44%
Engineering 4 13%
Chemical Engineering 1 3%
Computer Science 1 3%
Unspecified 1 3%
Other 2 6%
Unknown 9 28%