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Original Articles

Computer simulation of the correlation factor for impurity diffusion

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Pages 125-130 | Received 13 Mar 1978, Accepted 13 May 1978, Published online: 27 Sep 2006

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Read on this site (5)

I. V. Belova & G. E. Murch. (2003) Computer simulation of solute-enhanced diffusion kinetics in dilute fcc alloys. Philosophical Magazine 83:3, pages 377-392.
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Z. Qin & G.E. Murch. (1993) Correlation effects in dislocation pipe diffusion II. A Monte Carlo study. Philosophical Magazine A 67:2, pages 381-389.
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GraemeE. Murch & JeppeC. Dyre. (1989) Correlation effects in ionic conductivity. Critical Reviews in Solid State and Materials Sciences 15:4, pages 345-365.
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A.R. Allnatt & E.L. Allnatt. (1984) Computer simulation of phenomenological coefficients for atom transport in a random alloy. Philosophical Magazine A 49:5, pages 625-635.
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Y. Okamura & A.R. Allnatt. (1983) Phenomenological coefficients for atom transport in dilute interstitial solid solutions. Philosophical Magazine A 48:3, pages 387-396.
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Articles from other publishers (6)

Graeme E. Murch. 2006. Materials Science and Technology. Materials Science and Technology.
Wolfgang Püschl, Hiroshi Numakura & Wolfgang Pfeiler. 2007. Alloy Physics. Alloy Physics 173 280 .
GRAEME E. MURCH. 1984. Diffusion in Crystalline Solids. Diffusion in Crystalline Solids 379 427 .
A R Allnatt. (1982) Einstein and linear response formulae for the phenomenological coefficients for isothermal matter transport in solids. Journal of Physics C: Solid State Physics 15:27, pages 5605-5613.
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A R Allnatt. (1981) Phenomenological coefficients for matter transport by vacancies from linear response theory: II. Completion of the five-frequency model. Journal of Physics C: Solid State Physics 14:35, pages 5467-5477.
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R Hrach & H Biederman. (1981) The Monte Carlo method in physical electronics and thin film physics. Vacuum 31:1, pages 39-50.
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