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  1.  27
    Charged dislocations and the strength of ionic crystals.J. D. Eshelby, C. W. A. Newey, P. L. Pratt & A. B. Lidiard - 1958 - Philosophical Magazine 3 (25):75-89.
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  2.  26
    Dislocations in the fluorite structure.A. G. Evans & P. L. Pratt - 1969 - Philosophical Magazine 20 (168):1213-1237.
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  3.  15
    The bending deformation of magnesium oxide.A. A. Bruneau & P. L. Pratt - 1962 - Philosophical Magazine 7 (83):1871-1885.
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  4.  27
    Work hardening in ionic crystals.A. G. Evans & P. L. Pratt - 1970 - Philosophical Magazine 21 (173):951-970.
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  5.  29
    Some dislocation interactions in simple ionic crystals.B. H. Kear, A. Taylor & P. L. Pratt - 1959 - Philosophical Magazine 4 (41):665-680.
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  6.  30
    The transient conductivity increase in deformed alkali halides.A. Taylor & P. L. Pratt - 1958 - Philosophical Magazine 3 (33):1051-1052.
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  7.  17
    Strain ageing in CdCl2-doped rock salt.L. M. Brown & P. L. Pratt - 1963 - Philosophical Magazine 8 (89):717-734.
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  8.  28
    The generation of point defects by deformation and fatigue in alkali halides.R. W. Davidge, C. E. Silverstone & P. L. Pratt - 1959 - Philosophical Magazine 4 (44):985-987.
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  9.  23
    Quench hardening in sodium chloride crystals.B. H. Kear & P. L. Pratt - 1959 - Philosophical Magazine 4 (37):56-71.
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  10.  18
    An attempt to determine the binding energy of point defects and dislocations in sodium chloride by internal friction measurements.D. C. Philips & P. L. Pratt - 1970 - Philosophical Magazine 22 (178):809-814.
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  11.  22
    The recovery of internal friction in sodium chloride.D. C. Phillips & P. L. Pratt - 1970 - Philosophical Magazine 21 (170):217-243.
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