Useful Links
Engineering
Mechanical Engineering
Engineering Mechanics
1. Introduction to Engineering Mechanics
2. Statics of Particles
3. Rigid Bodies: Equivalent Force Systems
4. Equilibrium of Rigid Bodies
5. Structural Analysis
6. Internal Forces
7. Friction
8. Center of Gravity, Centroid, and Moment of Inertia
9. Kinematics of a Particle
10. Kinetics of a Particle: Force and Acceleration
11. Kinetics of a Particle: Work and Energy
12. Kinetics of a Particle: Impulse and Momentum
13. Planar Kinematics of a Rigid Body
14. Planar Kinetics of a Rigid Body: Force and Acceleration
15. Planar Kinetics of a Rigid Body: Work and Energy
16. Planar Kinetics of a Rigid Body: Impulse and Momentum
17. Three-Dimensional Kinematics of a Rigid Body
18. Three-Dimensional Kinetics of a Rigid Body
19. Mechanical Vibrations
Internal Forces
Internal Loadings in Structural Members
Types of Internal Forces
Normal Force
Axial Loading
Sign Conventions
Shear Force
Transverse Loading
Sign Conventions
Bending Moment
Flexural Loading
Sign Conventions
Torsional Moment
Twisting Loading
Sign Conventions
Method of Sections for Internal Forces
Sign Convention Consistency
Shear and Bending Moment Diagrams
Purpose and Applications
Structural Design
Maximum Value Identification
Construction Methods
Point-by-Point Method
Integration Method
Graphical Construction
Step-by-Step Procedure
Critical Points
Load-Shear-Moment Relationships
Differential Relationships
Load to Shear Relationship
Shear to Moment Relationship
Integration Relationships
Area Method Applications
Cable Analysis
Cable Characteristics
Flexible Members
Tension-Only Capability
Cables with Concentrated Loads
Geometry Analysis
Tension Calculation
Support Reactions
Cables with Distributed Loads
Parabolic Cable Shape
Uniform Load Distribution
Tension Variation
Maximum Tension Location
Previous
5. Structural Analysis
Go to top
Next
7. Friction