AMME2500
Engineering Dynamics
University of Sydney, Australia
About course
Engineering Mechanics builds on the foundations of either AMME1550 or Physics 1 and gives students a more thorough understanding of the motion of rigid body objects whether or not the causes of the motion are known. It also gives students a more thorough understanding of the correlation between mathematical concepts (such as determinants, the dot and cross product) and observable mechanics examples [to a greater extent in the Gyro and Vibro Labs]. This is a core course for all AMME students and builds on concepts that will be used in all design subjects as well as Fluid Mechanics to a great extent.
Course Structure
- Introduction
| 1. | 2D Kinematics (Plane Motion) | FREE | 6:25 |
| 2. | 2D Rotation | ||
| 3. | 2D Relative and Absolute Motion | ||
| 4. | 2D Motion Relative to Rotating Axis | ||
| 5. | 2D Newton's Second Law of Motion Approach | ||
| 6. | Work-Energy Method | ||
| 7. | 2D Impulse Momentum Approach | ||
| 8. | 3D Kinematics | ||
| 9. | 3D Kinetics | ||
| 10. | What is the Lagrangian? | ||
| 11. | Lagrange: Energy Methods | ||
| 12. | Lagrange: Forced Vibration | ||
| 13. | Lagrange: Free Vibration | ||
| 14. | Lagrange: Vibration of Rigid Bodies | ||
| 15. | Variable Mass |
1.1 2D Kinematics (Plane Motion)
u8qw00yzsp_1.1 2D Kinematics (Plane Motion) from spoonfeedme on Vimeo
Transcript
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