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Bachelor of Science in Structural Engineering

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Course Outline

10 sections
1. Structural Analysis
100 mins
10 topics
Introduction to Structural Analysis Types of Structural Loads Determinacy and Indeterminacy in Structures Analysis of Trusses Shear and Moment Diagrams
2. Introduction to Structural Engineering
80 mins
8 topics
Role of Structural Engineers Structural Analysis Techniques Structural Design Principles Types of Structural Systems Structural Materials
3. Structural Design
100 mins
10 topics
Introduction to Structural Design Material Properties in Structural Design Structural Analysis Methods Structural Load Analysis Beam Design
4. Concrete Structures
100 mins
10 topics
Introduction to Concrete Structures Concrete Mix Design Reinforcement in Concrete Structures Structural Analysis of Concrete Members Concrete Construction Techniques
5. Steel Structures
100 mins
10 topics
Introduction to Steel Structures Types of Steel Structures Structural Steel Components Steel Material Properties Steel Structural Design Principles
6. Timber Structures
100 mins
10 topics
Introduction to Timber Structures Types of Timber used in Construction Structural Design Considerations for Timber Structures Timber Framing Systems Preservation and Treatment of Timber
7. Foundation Engineering
80 mins
8 topics
Introduction to Foundation Engineering Soil Mechanics Fundamentals Site Investigation and Soil Testing Shallow Foundations Deep Foundations
8. Earthquake Engineering
100 mins
10 topics
Introduction to Earthquake Engineering Seismology and Plate Tectonics Earthquake Hazards and Risk Assessment Seismic Design Codes and Regulations Structural Dynamics and Response to Earthquakes
9. Structural Dynamics
100 mins
10 topics
Introduction to Structural Dynamics Single Degree of Freedom Systems Multiple Degree of Freedom Systems Structural Modeling for Dynamic Analysis Dynamic Response of Structures
10. Advanced Structural Materials
90 mins
9 topics
Introduction to Advanced Structural Materials Composite Materials Advanced Ceramics in Structural Applications Superalloys and High-Performance Metals Nanomaterials for Structural Applications
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