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  1.  45
    Dislocation nucleation in the initial stage during nanoindentation.H. Y. Liang,C. H. Woo,Hanchen Huang,A. H. W. Ngan &T. X. Yu -2003 -Philosophical Magazine 83 (31-34):3609-3622.
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  2.  18
    Stochastic theory for jerky deformation in small crystal volumes with pre-existing dislocations.K. S. Ng &A. H. W. Ngan -2008 -Philosophical Magazine 88 (5):677-688.
  3.  31
    Understanding acoustoplasticity through dislocation dynamics simulations.K. W. Siu &A. H. W. Ngan -2011 -Philosophical Magazine 91 (34):4367-4387.
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  4.  23
    Deformation of micron-sized aluminium bi-crystal pillars.K. S. Ng &A. H. W. Ngan -2009 -Philosophical Magazine 89 (33):3013-3026.
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  5.  31
    Strength of metals under vibrations – dislocation-density-function dynamics simulations.B. Cheng,H. S. Leung &A. H. W. Ngan -2015 -Philosophical Magazine 95 (16-18):1845-1865.
  6.  17
    Delayed plasticity in nanoindentation of annealed crystals.A. H. W. Ngan &P. C. Wo -2006 -Philosophical Magazine 86 (9):1287-1304.
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  7.  19
    Transition from deterministic to stochastic deformation.A. H. W. Ngan &K. S. Ng -2010 -Philosophical Magazine 90 (14):1937-1954.
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  8.  36
    The continuous stiffness measurement technique in nanoindentation intrinsically modifies the strength of the sample.K. W. Siu &A. H. W. Ngan -2013 -Philosophical Magazine 93 (5):449-467.
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  9.  18
    Nanoindentation using an atomic force microscope.B. Tang &A. H. W. Ngan -2011 -Philosophical Magazine 91 (7-9):1329-1338.
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  10.  26
    Viscoelastic effects during depth-sensing indentation of cortical bone tissues.B. Tang,A. H. W. Ngan &W. W. Lu -2006 -Philosophical Magazine 86 (33-35):5653-5666.
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  11.  15
    TEM study of the deformation structures around nano-scratches.P. C. Wo,I. P. Jones &A. H. W. Ngan -2008 -Philosophical Magazine 88 (9):1369-1388.
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