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  1. Orbital-free density functional theory simulations of dislocations in aluminum.Ilgyou Shin, Ashwin Ramasubramaniam, Chen Huang, Linda Hung & Emily A. Carter - 2009 - Philosophical Magazine 89 (34-36):3195-3213.
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  • Struktur der kinken und einschnürungen in schrauben- und 71°-versetzungen in kubisch-raumzentrierten metallen.Von C. Wüthrich - 1977 - Philosophical Magazine 35 (2):325-335.
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  • Dislocation structure in molybdenum single crystals after deformation at 293° and 400°K.D. Vesely - 1973 - Philosophical Magazine 27 (3):607-621.
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  • Ab-initiosimulation of ⟨110] screw dislocations in γ-TiAl.C. Woodward ∥ & S. I. Rao - 2004 - Philosophical Magazine 84 (3-5):401-413.
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  • Which stresses affect the glide of screw dislocations in bcc metals?Roman Gröger - 2014 - Philosophical Magazine 94 (18):2021-2030.
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  • Dislocation cross-slip mechanisms in aluminum.Congming Jin, Yang Xiang & Gang Lu - 2011 - Philosophical Magazine 91 (32):4109-4125.
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  • Atomistic studies of ⟨101] screw dislocation core structures and glide in γ-TiAl.I. H. Katzarov & A. T. Paxton - 2009 - Philosophical Magazine 89 (21):1731-1750.
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  • Evidence from numerical modelling for 3D spreading of [001] screw dislocations in Mg2SiO4forsterite.Ph Carrez, A. M. Walker, A. Metsue & P. Cordier - 2008 - Philosophical Magazine 88 (16):2477-2485.
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  • On the atomic structures, mobility and interactions of extended defects in GaN: dislocations, tilt and twin boundaries.A. Béré & A. Serra - 2006 - Philosophical Magazine 86 (15):2159-2192.
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  • Atomic simulation of the dislocation core structure and Peierls stress in alkali halide.R. G. Hoagland, J. P. Hirth & P. C. Gehlen - 1976 - Philosophical Magazine 34 (3):413-439.
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  • Lattice statics applied to screw dislocations in cubic metals.L. L. Boyer & J. R. Hardy - 1971 - Philosophical Magazine 24 (189):647-671.
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  • Nonplanar core structure of the screw dislocations in tantalum from the improved Peierls–Nabarro theory.Xiangsheng Hu & Shaofeng Wang - 2018 - Philosophical Magazine 98 (6):484-516.
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  • Ab initiomulti-string Frenkel–Kontorova model for a b =a/2[111] screw dislocation in bcc iron.Mark R. Gilbert & Sergei L. Dudarev - 2010 - Philosophical Magazine 90 (7-8):1035-1061.
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  • Directional versus central-force bonding in studies of the structure and glide of 1/2⟨111⟩ screw dislocations in bcc transition metals. [REVIEW]R. Gröger & V. Vitek - 2009 - Philosophical Magazine 89 (34-36):3163-3178.
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  • Interactions between lattice dislocations and twin boundaries in tungsten: A comparative atomistic simulation study.M. Mrovec, C. Elsässer & P. Gumbsch - 2009 - Philosophical Magazine 89 (34-36):3179-3194.
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  • Core structure of screw dislocations in body-centred cubic metals: relation to symmetry and interatomic bonding.V. Vitek † - 2004 - Philosophical Magazine 84 (3-5):415-428.
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  • The thermally activated deformation of niobium-molybdenum and niobium-rhenium alloy single crystals.C. D. Statham, D. A. Koss & J. W. Christian - 1972 - Philosophical Magazine 26 (5):1089-1103.
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