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AgAu

Compound Descriptions:

Formula:AgAu
Element System:Ag-Au
Element Names:Silver, Gold
Molecular Weight:304.837 g/mol
Name(s):AgAu

Landolt-Börnstein Citations:

Atomic Defects and Diffusion

 Figures for 5: Figs. 1 - 53: Vol. III/26 5, p.340III/26
 Chemical diffusion tables: Ag-Al - Co-Ni: Vol. III/26 5.2, p.283III/26

Electronic Properties

 Resistivity/atomic percent impurity in dilute alloys: Figs. 1 - 93: Vol. III/15A 1.4.1, p.197III/15a
 Resistivity/atomic percent impurity in dilute alloys: Table 1: host metal Ag - Fe: Vol. III/15A 1.4.1, p.167III/15a
 Electrical resistivity in Dilute alloys: Application of modified Linde's law: Vol. III/15A 1.4.2, p.254III/15a
 Electrical resistivity: Deviation from Matthiessen's rule (DMR): Figs. 1 - 43: Vol. III/15A 1.4.3, p.259III/15a
 Thermopower of dilute alloys: Data: Figs. 1 - 29: Vol. III/15B 3.10.3, p.141III/15b
 Thermopower of dilute alloys: Data: Tables 1 - 2: Vol. III/15B 3.10.3, p.125III/15b
 Thermopower of dilute alloys: Data: Figs. 1 - 29: Vol. III/15B 3.10.3, p.140III/15b
 Optical constants of binary alloys: Figs. 1 - 23: Vol. III/15B 4.5.-4.7, p.456III/15b
 Optical constants of binary alloys: Figs. 24 - 52: Vol. III/15B 4.5.-4.7, p.474III/15b
 Optical constants of binary alloys: Figs. 1 - 23: Vol. III/15B 4.5.-4.7, p.455III/15b
 Optical properties of pure metals and binary alloys: Drude parameters of binary alloys: Vol. III/15B 4.6, p.377III/15b
 Optical constants of binary alloys: Ag-Au - Ag-Cd: Vol. III/15B 4.7, p.382III/15b
 Thermal conductivity of alloys: Introduction: Estimation method for alloys: Vol. III/15C 3.1.2, p.128III/15c
 Binary alloys: Ag-based alloys: Vol. III/15C 3.3.1.1, p.172III/15c
 Band structures and Fermi surfaces: Data: Figs. 2 - 31: Vol. III/13A 2.2.1.2, p.198III/13a

References

III/13a
Short: III/13a
Title: Metals: Phonon States, Electron States and Fermi Surfaces: Phonon States of Elements. Electron States and Fermi Surfaces of Alloys
Author: Dederichs, P.H.; Schober, H.; Sellmyer, D.J.
Editor: Hellwege, K.-H.; Olsen, J.L.
Source: Landolt-Börnstein, New Series
Volume: III/13a
Year: 1981
ISBN: 3-540-09774-0
ISBN: 978-3-540-09774-7
Internet Resource: DOI:10.1007/b19988
RefComment: 904 figs., X, 458 pages. Hardcover
Abstract: Volume III/13 covers data on phonon and electron states and Fermi surfaces of metals. Both experimental and theoretical results published up to 1980 are included. Metallic elements and compounds, disordered alloys as well as homogeneously strained metallic elements are con-sidered. An appendix presents a compilation of all Bravias lattices, primitive unit cells, reciprocal lattices, and first Brillouin zones.
III/15a
Short: III/15a
Title: Metals: Electronic Transport Phenomena: Electrical Resistivity, Kondo and Spin Fluctuation Systems, Spin Glasses and Thermopower
Author: Bass, J.; Fischer, K.H.
Editor: Hellwege, K.-H.; Olsen, J.L.
Source: Landolt-Börnstein, New Series
Volume: III/15a
Year: 1982
ISBN: 3-540-11082-8
ISBN: 978-3-540-11082-8
Internet Resource: DOI:10.1007/b29240
RefComment: 875 figs., VIII, 396 pages. Hardcover
Abstract: The first two subvolumes of volume III/15 contain data on electrical transport in metals. Both experimental and theoretical results published up to 1981 have been included. In the third subvolume data on thermal - predominantly electronic - transport of pure metals and alloys are presented, the literature up to 1989 has been taken into account.
III/15b
Short: III/15b
Title: Metals: Electronic Transport Phenomena: Electrical Resistivity, Thermoelectrical Power and Optical Properties
Author: Bass, J.; Dugdale, J.S.; Foiles, C.L.; Myers, A.
Editor: Hellwege, K.-H.; Olsen, J.L.
Source: Landolt-Börnstein, New Series
Volume: III/15b
Year: 1985
ISBN: 3-540-11694-X
ISBN: 978-3-540-11694-3
Internet Resource: DOI:10.1007/b19992
RefComment: 624 figs., IX, 490 pages. Hardcover
Abstract: The first two subvolumes of volume III/15 contain data on electrical transport in metals. Both experimental and theoretical results published up to 1981 have been included. In the third subvolume data on thermal - predominantly electronic - transport of pure metals and alloys are presented, the literature up to 1989 has been taken into account.
III/15c
Short: III/15c
Title: Metals: Electronic Transport Phenomena: Thermal Conductivity of Pure Metals and Alloys
Author: Klemens, P.G.; Neuer, G.; Sundqvist, B.; Uher, C.; White, G.K.
Editor: Madelung, O.; White, G.K.
Source: Landolt-Börnstein, New Series
Volume: III/15c
Year: 1991
ISBN: 3-540-53512-8
ISBN: 978-3-540-53512-6
Internet Resource: DOI:10.1007/b91373
RefComment: 390 figs., XV, 460 pages. Hardcover
Abstract: The first two subvolumes of volume III/15 contain data on electrical transport in metals. Both experimental and theoretical results published up to 1981 have been included. In the third subvolume data on thermal - predominantly electronic - transport of pure metals and alloys are presented, the literature up to 1989 has been taken into account.
III/26
Short: III/26
Title: Diffusion In Solids Metals and Alloys
Author: Bakker, H.; Bonzel, H.P.; Bruff, C.M.; Dayananda, M.A.; Gust, W.; Horváth, J.; Kaur, I.; Kidson, G.V.; LeClaire, A.D.; Mehrer, H.; Murch, G.E.; Neumann, G.; Stolica, N.; Stolwijk, N.A.
Editor: Mehrer, H.
Source: Landolt-Börnstein, New Series
Volume: III/26
Year: 1990
ISBN: 3-540-50886-4
ISBN: 978-3-540-50886-1
Internet Resource: DOI:10.1007/b37801
RefComment: 650 figs., XIV, 747 pages. Hardcover
Abstract: Volume III/26 presents a comprehensive and critically evaluated collection of diffusion data for solid metals and alloys. The following properties are covered: Self- and impurity diffusion in metallic elements, self-diffusion in homogeneous binary alloys, chemical diffusion in binary and ternary alloys, diffusion in amorphous alloys, diffusion of interstitial foreign atoms in metallic elements, mass and pressure dependence of diffusion, diffusion along dislocations, grain and interphase boundary diffusion and diffusion on surfaces.

  File created on 2009/18/08 by LCI Publisher GmbH (Gaja Peters, Inga Thede, Volkmar Vill, Ron Zenczykowski)
  © 2009   Landolt Börnstein,   Springer-Verlag Berlin Heidelberg


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