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Correspondence

A comment on the electrical resistivity during G.P. zone formation

Pages 1015-1020 | Received 19 Nov 1975, Published online: 02 Sep 2006

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S. Esmaeili, D. Vaumousse, M. W. Zandbergen, W. J. Poole, A. Cerezo & D. J. Lloyd. (2007) A study on the early-stage decomposition in the Al–Mg–Si–Cu alloy AA6111 by electrical resistivity and three-dimensional atom probe. Philosophical Magazine 87:25, pages 3797-3816.
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A.J. Hillel. (1983) The electrical resistivity of GP zones Temperature dependence. Philosophical Magazine B 48:3, pages 237-243.
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A.J. Hillel & P.L. Rossiter. (1981) Resistivity mechanisms during clustering in alloys. Philosophical Magazine B 44:3, pages 383-388.
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W. Wagner, R. Poerschke & H. Wollenberger. (1981) Dependence of electrical resistivity on the degree of short range order in a nickel–copper alloy. Philosophical Magazine B 43:2, pages 345-355.
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P.L. Rossiter & B. Bykovec. (1978) The electrical resistivity of Cu3Au. Philosophical Magazine B 38:6, pages 555-565.
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J. Perrin & P.L. Rossiter. (1977) The temperature dependence of the electrical resistivity of A1-6·8 at. % Zn. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 36:1, pages 109-116.
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A.J. Hillel, J.T. Edwards & P. Wilkes. (1977) The role of anisotropy in the electrical resistivity of GP zones. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 35:3, pages 829-830.
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Articles from other publishers (12)

Li-Ngee Ho & Hiroshi Nishikawa. (2012) Surfactant-Free Synthesis of Copper Particles for Electrically Conductive Adhesive Applications. Journal of Electronic Materials 41:9, pages 2527-2532.
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S.B. Youssef. (1996) Resistometric study of Ag—8 at % Cu alloy aged in the temperature range 0.4–0.65 Tm. Physica B: Condensed Matter 228:3-4, pages 337-341.
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S.B. Youssef, M.H.N. Beshai, A. Fawzy, M. Sobhy & G. Saad. (1995) Resistometric study of Al-10% Zn aged below and above half of the melting temperature. Physica B: Condensed Matter 205:3-4, pages 291-297.
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Ney José Luiggi & Oscar Febres. (1992) Resistivity anomaly during the process of separation of phases of a binary alloy. Physical Review B 46:4, pages 1992-2000.
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U. H. Gläser & H. Löffler. (1984) Effective Medium Approach for the Residual Resistivity of Alloys Containing Guinier-Preston Zones. physica status solidi (b) 126:2, pages 741-751.
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N J Luiggi. (1984) Anisotropic resistivity of Guinier-Preston zones for an Al-Zn alloy during pre-precipitation. Journal of Physics F: Metal Physics 14:11, pages 2601-2612.
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G. Schubert & J. Richter. (2006) The Electrical Resistivity of Clustering Alloys. physica status solidi (b) 125:2, pages 839-847.
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U. H. Gläser. (2006) On the Calculation of the Residual Resistivity of Precipitates. physica status solidi (b) 124:1, pages 423-429.
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G. Vigier & J.M. Pelletier. (1982) Influence of short range ordering and clustering on transport properties. Acta Metallurgica 30:10, pages 1851-1859.
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C. Radomsky & H. Löffler. (1978) On the relation between X-ray small-angle scattering and electrical resistivity. Physica Status Solidi (a) 50:1, pages 123-130.
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H. P. Aubauer. (2006) Residual electrical resistivity of alloys. physica status solidi (b) 90:1, pages 345-354.
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P L Rossiter. (1977) Effects of temperature on the order-dependent electrical resistivity. Journal of Physics F: Metal Physics 7:3, pages 407-418.
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