Local and Global DuctilityExamines the relationship between different ductilities in seismic engineering, highlighting their significance in structural elements.
Seismic Design FundamentalsCovers seismic design fundamentals, including failure modes, capacity design, and displacement-based evaluation of structures.
Capacity Design of RC WallsExplores the capacity design of reinforced concrete walls in seismic engineering, emphasizing flexural and shear design principles.
Plastic Hinge AnalysisExplores the plastic hinge method, moment-curvature analysis, and force-displacement response construction in structures.
Design of the Plastic ZoneCovers the capacity design of reinforced concrete walls and structures, emphasizing stability, reinforcement design, and seismic engineering.
Steel buildings: Seismic DesignExplores seismic design in steel buildings, covering failure modes, behaviour of materials, and innovative structural solutions.
URM Structures Failure ModesExplores the failure modes of URM structures, covering in-plane and out-of-plane mechanisms, seismic aspects, and strength capacity.
Capacity Design of RC WallsCovers the capacity design of reinforced concrete walls in 10 steps, emphasizing overstrength and ductility.
Plastic hinge methodExplains the plastic hinge method for estimating inelastic deformation capacity in structural elements, focusing on flexural deformations and providing good approximations.
Bridge Pier DesignCovers the design of a reinforced concrete bridge pier for ductile behavior under seismic loading.