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Article cité :

Solute pairing in solution‐hardened Cu‐Ni, Cu‐Pd binary, and Cu‐Ni‐Pd ternary fcc alloys

Joe Wong, W. E. Nixon, J. W. Mitchell and S. S. Laderman
Journal of Applied Physics 71 (1) 150 (1992)
https://doi.org/10.1063/1.350728

The yield stress of single crystals of α-phase Cu-Ni-Pd and Cu-Pd alloys

Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences 423 (1865) 267 (1989)
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Electrical Resistivity, Thermoelectrical Power and Optical Properties

C. L. Foiles
Landolt-Börnstein - Group III Condensed Matter, Electrical Resistivity, Thermoelectrical Power and Optical Properties 15b 489 (1985)
https://doi.org/10.1007/10201705_55

Electrical Resistivity, Thermoelectrical Power and Optical Properties

C. L. Foiles
Landolt-Börnstein - Group III Condensed Matter, Electrical Resistivity, Thermoelectrical Power and Optical Properties 15b 377 (1985)
https://doi.org/10.1007/10201705_45

Low-temperature measurements of the thermoelectric power and resistivity of dilute AuY, AuZr, AuNb, AuRh, AuPd and AuPt alloys; II. Phase-shift analysis

J A Julianis, F F Bekker and P F de Chatel
Journal of Physics F: Metal Physics 14 (9) 2077 (1984)
https://doi.org/10.1088/0305-4608/14/9/014

A pseudopotential approach to the electronic structure of dilute transitional and noble metal impurity systems

M G Ramsey and P V Smith
Journal of Physics F: Metal Physics 12 (8) 1697 (1982)
https://doi.org/10.1088/0305-4608/12/8/015

Virtual bound states in dilute noble metal based disordered alloys according to the resonant model potential theory

L Dagens
Journal of Physics F: Metal Physics 9 (1) 45 (1979)
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