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Lecture
Spectra and Nonlinearity in Seismic Engineering
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Related lectures (32)
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Response Spectrum Method
Covers the Response Spectrum Method and its combination rules, emphasizing effective modal mass and maximum absolute responses.
Seismic Engineering Fundamentals
Introduces seismic engineering fundamentals, covering elastic response spectra, SDOF systems, and soil impact.
Capacity Design of RC Walls
Explores the capacity design of reinforced concrete walls in seismic engineering, emphasizing flexural and shear design principles.
Earthquake Effects: Ground Movement and Seismic Engineering
Explores earthquake effects, seismic hazards, building damage, and seismic design principles, emphasizing the importance of deformation capacity in structures.
Seismic Engineering: Failure Mechanisms
Explores the failure mechanisms of reinforced concrete walls in seismic engineering and the capacity design of steel and RC wall buildings.
Seismic Assessment of Masonry Structures
Explores seismic assessment of masonry structures, focusing on out-of-plane failure of URM walls and its impact on earthquake-prone regions.
URM Structures Failure Modes
Explores the failure modes of URM structures, covering in-plane and out-of-plane mechanisms, seismic aspects, and strength capacity.
Seismic Engineering: Masonry Structures
Explores seismic vulnerability of unreinforced masonry buildings, focusing on failure modes and retrofit methods.
Relationship between R and Ductility
Delves into the relationship between R and ductility in seismic engineering, focusing on inelastic response spectra.
Plastic Hinge Method: Analysis and Design
Explores the plastic hinge method for inelastic deformation estimation and discusses the challenges of force-based design.