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Engineering
Civil Engineering
Structural Analysis and Design
1. Introduction to Structural Engineering
2. Fundamentals of Structural Mechanics
3. Structural Loads and Load Analysis
4. Analysis of Statically Determinate Structures
5. Structural Deflections and Deformations
6. Analysis of Statically Indeterminate Structures
7. Matrix Structural Analysis
8. Structural Design Principles
9. Steel Structure Design
10. Reinforced Concrete Design
11. Advanced Structural Analysis
12. Specialized Structural Systems
13. Seismic Design and Earthquake Engineering
14. Construction Considerations
15. Professional Practice
6.
Analysis of Statically Indeterminate Structures
6.1.
Indeterminacy Concepts
6.1.1.
Sources of Indeterminacy
6.1.2.
Degree of Indeterminacy Calculation
6.1.3.
Advantages and Disadvantages
6.2.
Force Method (Flexibility Method)
6.2.1.
Method of Consistent Deformations
6.2.2.
Selection of Redundants
6.2.3.
Compatibility Equations
6.2.4.
Flexibility Coefficients
6.2.5.
Applications to Beams
6.2.6.
Applications to Frames
6.2.7.
Applications to Trusses
6.2.8.
Temperature and Settlement Effects
6.3.
Displacement Method (Stiffness Method)
6.3.1.
Slope-Deflection Method
6.3.1.1.
Basic Equations
6.3.1.2.
Fixed-End Moments
6.3.1.3.
Applications to Beams
6.3.1.4.
Applications to Frames
6.3.1.5.
Sidesway Analysis
6.3.2.
Moment Distribution Method
6.3.2.1.
Distribution Factors
6.3.2.2.
Carry-Over Factors
6.3.2.3.
Iterative Process
6.3.2.4.
Applications to Continuous Beams
6.3.2.5.
Applications to Frames
6.3.2.6.
Modified Stiffness
6.4.
Approximate Analysis Methods
6.4.1.
Portal Method
6.4.1.1.
Assumptions
6.4.1.2.
Procedure
6.4.2.
Cantilever Method
6.4.2.1.
Assumptions
6.4.2.2.
Procedure
6.4.3.
Substitute Frame Method
6.4.4.
Equivalent Frame Method
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5. Structural Deflections and Deformations
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7. Matrix Structural Analysis