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The Art of Simplification in Materials Science 1996 MRS Fall Meeting Von Hippel Address

Published online by Cambridge University Press:  29 November 2013

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Abstract

The following is an edited version of the Von Hippel Award address, given by recipient Sir Alan Cottrell at the 1996 MRS Fall Meeting. Cottrell received the Materials Research Society's highest honor for “converting crystal dislocations from a hand-waving hypothesis to a rigorous discipline, transforming the understanding of brittle fracture, making varied and crucial advances in the theory of radiation damage, and for transforming the teaching of materials science throughout the academic world through his pioneering textbooks.” Cottrell is an honorable distinguished research Fellow in the Department of Materials Science and Metallurgy, University of Cambridge.

Type
Special Features
Copyright
Copyright © Materials Research Society 1997

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References

Further Reading

1.Cottrell, A.H., Chemical Bonding in Transition Metal Carbides (The Institute of Materials, London, 1995).Google Scholar
2.Cyrot-Lackmann, F., J. Phys. Chem. Solids 29 (1968) p. 1235.CrossRefGoogle Scholar
3.Friedel, J., The Physics of Metals, I-Electrons, edited by Ziman, J.M. (University Press, Cambridge, 1969).Google Scholar
4.Hohenberg, P. and Kohn, W., Phys. Rev. 136 (1964) p. B864.CrossRefGoogle Scholar
5.Hubbard, J., Proc. R. Soc. London A276 (1963) p. 238; Proc. R. Soc. London A277 (1963) p. 237.Google Scholar
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7.Nørskov, J.K. and Besenbacher, F., J. Less. Common Met. 130 (1987) p. 475.CrossRefGoogle Scholar
8.Pettifor, D.G., Phys. Rev. Lett. 63 (1989) p. 2480; Bonding and Structure of Molecules and Solids (Clarendon Press, Oxford, 1995).CrossRefGoogle Scholar
9.Pettifor, D.G. and Cottrell, A.H., eds., Electron Theory in Alloy Design (The Institute of Materials, London, 1992).Google Scholar
10.Slater, J.C. and Koster, G.F., Phys. Rev. 94 (1954) p. 1498.CrossRefGoogle Scholar
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