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The buckling criterion for 3D printed metal materials is studied experimentally in this paper.
The influence of damage on the intensity of the destruction of materials is studied as well.
Internal bone remodeling of inhomogeneous materials is studied both theoretically and numerically in this paper.
The emergence of discontinuous strain fields in incompressible materials is studied via singularity theory.
Release of transient thermal stress and intensity by periodic cracking in ferroelectric materials is studied.
The electrochemical kinetics of the materials is studied by cyclic voltammetry and electrochemical impedance spectroscopy.
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Two viscoelastic materials are studied.
The materials were studied without chemical treatment.
The photoluminescence spectra of the synthesized materials are studied.
Semiconductor properties of these materials were studied through electronic spectroscopy.
Photocrosslinking and thermal decrosslinking of those materials were studied.
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