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WIZAPE
Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Design of Earthquake-Resistant Structures
( 25 Modules )

Module #1
Introduction to Earthquake Engineering
Overview of earthquake engineering, importance of earthquake-resistant design, and course objectives
Module #2
Earthquake Basics
Understanding earthquakes, seismic waves, and earthquake magnitude and intensity
Module #3
Seismic Hazard Assessment
Determining seismic hazard, seismic risk, and probability of earthquake occurrence
Module #4
Site Selection and Geotechnical Considerations
Site selection, soil classification, and geotechnical factors affecting earthquake-resistant design
Module #5
Structural Systems for Earthquake Resistance
Overview of structural systems, including moment-resisting frames, braced frames, and shear walls
Module #6
Design for Lateral Loads
Calculating lateral loads, including wind and seismic loads, and designing for lateral resistance
Module #7
Ductility and Deformation in Structures
Understanding ductility, deformation, and hysteretic behavior in structures subjected to earthquakes
Module #8
Earthquake-Resistant Design of Foundations
Designing foundations for earthquake resistance, including shallow and deep foundations
Module #9
Design of Building Frames
Design of moment-resisting frames, including beam-column joints and column-beam connections
Module #10
Design of Bracing Systems
Design of bracing systems, including concentric and eccentric bracing
Module #11
Design of Shear Walls
Design of shear walls, including reinforced concrete and masonry shear walls
Module #12
Seismic Analysis of Structures
Types of seismic analysis, including equivalent static analysis and dynamic analysis
Module #13
Response Spectrum Analysis
Understanding response spectrum analysis, including spectral acceleration and response spectra
Module #14
Time History Analysis
Understanding time history analysis, including elastic and inelastic time history analysis
Module #15
Nonlinear Analysis of Structures
Understanding nonlinear analysis, including pushover analysis and nonlinear dynamic analysis
Module #16
Design of Non-Building Structures
Design of non-building structures, including bridges, dams, and industrial facilities
Module #17
Earthquake-Resistant Design of Non-Structural Components
Design of non-structural components, including equipment, piping, and architectural components
Module #18
Seismic Retrofitting of Existing Structures
Seismic retrofitting strategies, including strengthening, stiffening, and damping
Module #19
International Building Codes and Standards
Overview of international building codes and standards, including ASCE, IBC, and Eurocode
Module #20
Engineering Seismology
Understanding engineering seismology, including seismic hazard assessment and seismic risk analysis
Module #21
Case Studies:Successful Earthquake-Resistant Designs
Real-world examples of successful earthquake-resistant designs andcase studies
Module #22
Case Studies:Earthquake Damage and Collapse
Real-world examples of earthquake damage and collapse, and lessons learned
Module #23
Computational Tools and Software
Overview of computational tools and software for earthquake-resistant design, including ETABS, SAP2000, and OpenSees
Module #24
Laboratory Testing and Experimental Methods
Understanding laboratory testing and experimental methods for earthquake-resistant design
Module #25
Course Wrap-Up & Conclusion
Planning next steps in Design of Earthquake-Resistant Structures career


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