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The potential of metallic glasses as structural materials is assessed.
Suitability of both purification methods for preparation of Na-montmorillonite designed for synthesis of composite materials is assessed.
The ability of these formulations to successfully predict the mechanical performance of composite materials is assessed with the ply drop-off test.
The impact of local variations in elastic modulus on the fracture mechanical character of "microstructurally small" cracks commonly encountered in early stages of fatigue in polycrystalline materials, is assessed.
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Major issue in determining the efficacy of these materials is assessing their potential cellular toxicity either due to their inherent chemical composition/structure or as a consequence of their nanoscale biophysical properties [36].
Fracture toughness of these materials was assessed.
The mechanical properties of 3D printed materials are assessed.
Cyclic stress strain response and fatigue life of both materials were assessed.
The cyclic stress-strain response and fatigue life of both materials were assessed.
The failure mechanisms of dams composed of homogeneous and isotropic cohesionless materials were assessed with four different soils (Table 3).
Various building materials were assessed technically and their perceived warmth was evaluated by participants.
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