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Seismic Engineering: Historic Structures
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Related lectures (32)
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Guidelines for Historic Structures
Covers guidelines, codes, and standards for historic structures and seismic engineering.
Electrokinetic Devices: Streaming, Drawing and Waving Potentials
Explores electrokinetic devices, focusing on leveraging nanoscale structures to improve device performance and energy conversion.
Seismic Design Fundamentals
Covers seismic design fundamentals, including failure modes, capacity design, and displacement-based evaluation of 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.
URM Structures Failure Modes
Explores the failure modes of URM structures, covering in-plane and out-of-plane mechanisms, seismic aspects, and strength capacity.
Relationship between R and Ductility
Delves into the relationship between R and ductility in seismic engineering, focusing on inelastic response spectra.
Seismic Engineering: Masonry Structures
Explores seismic vulnerability of unreinforced masonry buildings, focusing on failure modes and retrofit methods.
Inelastic SDOF: Response and Design
Explores the response and design of inelastic SDOF systems under seismic forces, including force capacity, displacement ductility, and shear strength estimation.
Failure Mechanisms of RC Walls: Ductile vs. Brittle
Explores the ductile and brittle failure modes of RC walls under seismic loads.
Seismic Design: Conventional vs. Capacity Design
Explores seismic design, comparing conventional and capacity design approaches for structures subjected to earthquakes.