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Many of the structural details that exist in fatigue-loaded structures experience some kind of multi-axial loading condition.
Structures experience lateral deflections under earthquake loads.
These studies have primarily aimed to simulate the conditions which the biogenic structures experience in nature.
Most structures experience inelastic deformations when subjected to severe earthquake ground motions.
Further, it turns out that all the analyzed symmetric structures experience kinematic bifurcation on certain conditions.
Many engineering structures experience multiaxial fatigue states of stress strain in the vicinity of welded joints.
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The ultrafine-grained structures experienced limited grain growth during the annealing process.
In recent years, "smart structures" experienced significant popularity in civil engineering.
In general, engineered reinforced concrete structures experienced less damage compared with structures constructed with traditional construction practice.
This is true both for routine, low-rise structures and for flexible structures experiencing significant dynamic effects.
A strategy is developed for design of passive control systems for structures experiencing inelastic deformations during earthquake loading.
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