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  1.  63
    The Determination of Dislocation Densities in Thin Films.R. K. Ham - 1961 - Philosophical Magazine 6 (69):1183-1184.
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  2.  4
    Dislocation Multiplication, Vacancy Accumulation, and the Onset of Jerky Flow During Forward and Reverse 1 Strain in Cu-3.2 At. % Sn. [REVIEW]R. K. Ham & D. Jaffrey - 1967 - Philosophical Magazine 15 (134):247-256.
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  3.  9
    The Relation Between Surface and Interior Structures in Low-Amplitude Fatigue.D. P. Watt, J. D. Embury & R. K. Ham - 1968 - Philosophical Magazine 17 (145):199-203.
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  4.  3
    On the Loss of Dislocations During the Preparation of a Thin Film.R. K. Ham - 1962 - Philosophical Magazine 7 (79):1177-1182.
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  5.  17
    A Systematic Error in the Determination of Dislocation Densities in Thin Films.R. K. Ham & N. G. Sharpe - 1961 - Philosophical Magazine 6 (69):1193-1194.
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  6.  14
    The Effect of Thickness on the Distribution of Dislocations in Cold-Rolled Aluminium.R. K. Ham & M. G. Wright - 1964 - Philosophical Magazine 10 (108):937-948.
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  7.  6
    Nuclear Magnetic Resonance, Stored Energy, and the Density of Dislocations in Deformed Aluminium.E. A. Faulkner & R. K. Ham - 1962 - Philosophical Magazine 7 (74):279-284.
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  8.  3
    The Mechanism of Fatigue Softening.R. K. Ham & T. Broom - 1962 - Philosophical Magazine 7 (73):95-103.
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  9.  10
    Transient Stored Energy in Copper and Copper-3–2 At. % Tin.R. K. Ham - 1967 - Philosophical Magazine 15 (134):257-259.
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