Showing posts with label MIT-USA. Show all posts
Showing posts with label MIT-USA. Show all posts

Introduction to Civil Engineering Design

SES # TOPICS
L1 Introduction
L2 Planning and Design Process
L3 Materials, Loads, and Design Safety
L4 Behavior and Properties of Concrete and Steel
L5 Wind and Earthquake Loads
L6 Design of Reinforced Concrete Beams for Flexure
L7 Design of Reinforced Concrete Beams for Flexure
L8 Design of Reinforced Concrete Beams for Shear
L9 Guest Lecture: Project Introduction
L10 Design of Reinforced Concrete Beams for Shear
L11 Project Hour: Group Presentations on Site Visit Observation
L12 Bond, Anchorage, and Serviceability
L13 Bond, Anchorage, and Serviceability
Project Discussions
L14 Reinforced Concrete Columns
L15 Discussion of Project Tasks
L16 Exam 1 Review
L17 Exam 1
L18 Reinforced Concrete Columns
L19 Special Topic Lecture: Prestressed Concrete
L20 Reinforced Concrete Slabs
L21 Special Lecture: Bridge Design— Beyond the Calculations
L22 Introduction to Steel Design (PDF)
L23 Tension Members and Connections (PDF)
L24 Group Presentations
L25 Compression Members (PDF)
L26 Guest Lecture: Prestressed Concrete Systems
L27 Bending Members (PDF)
L28 Exam 2 Review
L29 Exam 2
L30 Structural Systems
L31 Final Project Presentations
L32 Final Project Presentations

Advanced Soil Mechanics Lecture notes from MIT-USA

The following set of lecture notes cover every major topic discussed in class.
Part II-1 Soil Composition, Index Properties and Soil Classification (PDF - 1.6 MB)
Part II-2 Soil Structure and Environmental Effects (PDF)
Part III-1 Dry Soil: Stresses (PDF)
Part III-2 Stress-Strain-Strength Properties (PDF - 1.0 MB)
Part III-3 Lateral Earth Pressures and Retaining Walls (PDF)
Part III-4 Shallow Foundations on Sand: Bearing Capacity (PDF - 3.0 MB)
Part IV-1 Effective Stress Principle and Capillarity (PDF)
Part IV-2 One-Dimensional Flow (PDF)
Part IV-2A Two-Dimensional Flow (PDF)
Part IV-3 Coefficient of Permeability (PDF 1 of 2) (PDF 2 of 2 - 2.0 MB)
Part IV-4 Stress-Strain-Strength Behavior of Saturated Clays (PDF - 2.4 MB)
Part IV-5 Lateral Earth Pressures (PDF)
Part IV-6 Slope Stability (PDF)
Part IV-7 Bearing Capacity (PDF)
Part V-1 Introduction, Pore Pressure Parameters and Undrained Shear (PDF)
Part V-2 Consolidation and Secondary Compression (PDF)
Part V-3 Stability Evaluation: Cohesive Soils (PDF)
Part V-4 Estimation of Design su in Practice (PDF - 2.0 MB)
Part V-5 Settlement Analyses (PDF - 3.0 MB)

Mechanics and Design of Concrete Structures Lecture notes from MIT-USA

LEC # TOPICS DESIGN EXAMPLES
1 Introduction; Design Criteria for Reinforced Concrete Structures (PDF)  
2 Micro-cracking of Concrete; Stress-strain Behavior in Multiaxial Loading (PDF)  
3 Failure Theories (PDF)  
4 Concrete Plasticity (PDF)  
5 Fracture Concepts (PDF)  
6 Creep and Shrinkage Deformation (PDF)  
7 Ductility and Deflections (PDF)  
8 Shear Failures (PDF)  
9 Shear Transfer; Shear Design (PDF) Failure Investigation of a Prestressed Concrete Bridge Girder (PDF)
10 Biaxial Bending (PDF)  
11 Beam Column Joints (PDF)  
12 Quiz 1  
13 Torsion (PDF) Shear and Torsion (PDF)
14 Term Project Update – Progress Reports and Presentations  
15 Torsion, Shear, and Flexure (PDF) Shear and Torsion (PDF)
16 Yield Line Theory for Slabs (PDF) Analysis of Rectangular Slabs Using Yield Line Theory (PDF)
17 R/C Thin Shell Structures (PDF)  
18 R/C Thin Shell and Structures (cont.) (PDF)  
19 Segmental Bridges / Tall Buildings (PDF)  
20 Term Project Update – Presentations  
21 Deterioration and Non-destructive Evaluation (NDE) of Concrete Structures (PDF)  
22 Earthquake Resistant Design; Repair and Seismic Retrofit of Concrete Structures (PDF)  
23 Quiz 2  
24 Final Presentations  
25 Final Presentations (cont.)  
26 Review and Discussion  

Structural Engineering Lecture notes from MIT-USA

SES # TOPICS
L1 Introduction
L2 Planning and Design Process
L3 Materials, Loads, and Design Safety
L4 Behavior and Properties of Concrete and Steel
L5 Wind and Earthquake Loads
L6 Design of Reinforced Concrete Beams for Flexure
L7 Design of Reinforced Concrete Beams for Flexure
L8 Design of Reinforced Concrete Beams for Shear
L9 Guest Lecture: Project Introduction
L10 Design of Reinforced Concrete Beams for Shear
L11 Project Hour: Group Presentations on Site Visit Observation
L12 Bond, Anchorage, and Serviceability
L13 Bond, Anchorage, and Serviceability
Project Discussions
L14 Reinforced Concrete Columns
L15 Discussion of Project Tasks
L16 Exam 1 Review
L17 Exam 1
L18 Reinforced Concrete Columns
L19 Special Topic Lecture: Prestressed Concrete
L20 Reinforced Concrete Slabs
L21 Special Lecture: Bridge Design— Beyond the Calculations
L22 Introduction to Steel Design (PDF)
L23 Tension Members and Connections (PDF)
L24 Group Presentations
L25 Compression Members (PDF)
L26 Guest Lecture: Prestressed Concrete Systems
L27 Bending Members (PDF)
L28 Exam 2 Review
L29 Exam 2
L30 Structural Systems
L31 Final Project Presentations
L32 Final Project Presentations

Lecture Notes Engineering Mechanics Lecture notes from MIT-USA

Free to download for Civil Engineering Books and Lecture Notes Engineering Mechanics Lecture notes from MIT-USA
LEC # TOPICS DESIGN EXAMPLES
1 Introduction; Design Criteria for Reinforced Concrete Structures (PDF)  
2 Micro-cracking of Concrete; Stress-strain Behavior in Multiaxial Loading (PDF)  
3 Failure Theories (PDF)  
4 Concrete Plasticity (PDF)  
5 Fracture Concepts (PDF)  
6 Creep and Shrinkage Deformation (PDF)  
7 Ductility and Deflections (PDF)  
8 Shear Failures (PDF)  
9 Shear Transfer; Shear Design (PDF) Failure Investigation of a Prestressed Concrete Bridge Girder (PDF)
10 Biaxial Bending (PDF)  
11 Beam Column Joints (PDF)  
12 Quiz 1  
13 Torsion (PDF) Shear and Torsion (PDF)
14 Term Project Update – Progress Reports and Presentations  
15 Torsion, Shear, and Flexure (PDF) Shear and Torsion (PDF)
16 Yield Line Theory for Slabs (PDF) Analysis of Rectangular Slabs Using Yield Line Theory (PDF)
17 R/C Thin Shell Structures (PDF)  
18 R/C Thin Shell and Structures (cont.) (PDF)  
19 Segmental Bridges / Tall Buildings (PDF)  
20 Term Project Update – Presentations  
21 Deterioration and Non-destructive Evaluation (NDE) of Concrete Structures (PDF)  
22 Earthquake Resistant Design; Repair and Seismic Retrofit of Concrete Structures (PDF)  
23 Quiz 2  
24 Final Presentations  
25 Final Presentations (cont.)  
26 Review and Discussion