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  1. Mechanisms of hardening due to copper precipitates in α-iron.D. J. Bacon & YuN Osetsky - 2009 - Philosophical Magazine 89 (34-36):3333-3349.
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  • Dislocation and defect density-based micromechanical modeling of the mechanical behavior of fcc metals under neutron irradiation.Shree Krishna, Amir Zamiri & Suvranu De - 2010 - Philosophical Magazine 90 (30):4013-4025.
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  • A dislocation dynamics study of the strength of stacking fault tetrahedra. Part II: interactions with mixed and edge dislocations.E. Martinez, J. Marian & J. M. Perlado - 2008 - Philosophical Magazine 88 (6):841-863.
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  • A dislocation dynamics study of the strength of stacking fault tetrahedra. Part I: interactions with screw dislocations.E. Martinez, J. Marian, A. Arsenlis, M. Victoria & J. M. Perlado - 2008 - Philosophical Magazine 88 (6):809-840.
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  • Molecular dynamics simulation of the interaction between a mixed dislocation and a stacking fault tetrahedron.H. -J. Lee & B. D. Wirth - 2009 - Philosophical Magazine 89 (9):821-841.
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  • Dislocation nucleation and defect formation in copper by stepped spherical indenter.Chansun Shin, Yuri N. Osetsky & Roger E. Stoller - 2012 - Philosophical Magazine 92 (25-27):3158-3171.
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  • Molecular dynamics studies of the interaction ofa/6 ⟨112⟩ Shockley dislocations with stacking fault tetrahedra in copper. Part I: Intersection of SFT by an isolated Shockley. [REVIEW]M. Niewczas & R. G. Hoagland - 2009 - Philosophical Magazine 89 (7):623-640.
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  • Molecular dynamic studies of the interaction of a/6⟨112⟩ Shockley dislocations with stacking fault tetrahedra in copper. Part II: Intersection of stacking fault tetrahedra by moving twin boundaries. [REVIEW]M. Niewczas & R. G. Hoagland - 2009 - Philosophical Magazine 89 (8):727-746.
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  • Closed and open-ended stacking fault tetrahedra formation along the interfaces of Cu–Al nanolayered metals.Ruizhi Li & Huck Beng Chew - 2015 - Philosophical Magazine 95 (25):2747-2763.
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