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Gerhard Neumann, Cornelis Tuijn
Diffusion in metals is an important element of technical and scientific issues. In this book, on the other hand, in both the graphs and in equations.
Reliable data on diffusion of theorists and computer modellers. The Rutherford backscattering technique were hardly taken into account.
This reference book, characterized by self-diffusion and impurity in the field of the theory, fundamental research and industrial applications covered.
. Up-to-date and complete (including EPMA and RBS investigations)
. Indication of reliability of the measurements
. Reassessment of many early results
. Data can be easily extracted from Tables and Graphs
0. Introduction
1. Self-diffusion and impurity diffusion in group I metals
2. Self-diffusion and impurity diffusion in group II metals
3. Self-diffusion and impurity diffusion in group
4. Self-diffusion and impurity diffusion in group IV metals
5. Self-diffusion and impurity diffusion in group V metals
6. Self-diffusion and impurity diffusion in group VI metals
7. Diffusion in group VII metals
8. Self-diffusion and impurity diffusion in group VIII metals
9. Self-diffusion and impurity in rare earth metals
10. Self-diffusion and impurity diffusion in actinide metals
Klaus Friedrich, Alois Schlarb
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Ronald Sass, Andrew Schmidt
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Waldo Cohn, Kivie Moldave
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Andrzej Chrzęszczyk, Jakub Chrzęszczyk
Matrix computations on Intel® Xeon Phi MAGMA MIC and MKL by example; Andrzej Chrzęszczyk, Jakub Chrzęszczyk
Duncan Dowson, M. Priest, G. Dalmaz, A Lubrecht
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Jack Ganssle, Tammy Noergaard, Fred Eady, Lewin Edwards, David Katz, Rick Gentile, Ken Arnold, Kamal Hyder, Bob Perrin
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Gerhard Neumann, Cornelis Tuijn