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Abstracts
Mechanism of Dislocation Climb in Binary and Mixed III-V Semiconductors
a.499
Dislocation Pole Model for Deformation Twinning in Face-Centered Cubic Lattices
a.500
On the Geometry of Dipolar Dislocation Structures Formed by Multi-Slip
a.501
Lattice Dynamics Approach to Acoustic Wave Emission during Dislocation Annihilation
a.502
A Model of Interacting Atomic Chains for the Description of Edge Dislocations
a.503
Energy of a Non-Regular Hexagonal Network of Misfit Dislocations in Anisotropic Elasticity
a.504
Dislocations, Steps and Disconnections at Interfaces
a.505
Dislocation Behavior at Hetero-Interfaces in III-V Semiconductors
a.506
Dislocation Multiplication in Face-Centered Cubic Metals under High Shear Stresses
a.507
HomeDefect and Diffusion ForumDefect and Diffusion Forum Vols. 119-120A Model of Interacting Atomic Chains for the...

A Model of Interacting Atomic Chains for the Description of Edge Dislocations

Page: A503

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