|
Rolling as pure rotation:
|
|
Kinetic Energy: |
 |
|
A rigid body in motion about a moving axis |
|
|
A primitive yo-yo |
Example: The string unwinds without slipping or stretching. Find the speed and the acceleration of the center of mass.
|
 |
|
|
The race of objects with different moments |
Example: Assuming h is much larger than the radii of the rolling bodies and pure rotation. Due to the conservation of mechanical energy,
|
|
 |
|
Rolling friction |
|
|
Consider the acceleration of a rolling sphere |
Example: A solid bowling ball rolls without slipping. Assuming the ramp is solid. Find out the ball¡¯s acceleration.
|
 |
|
The above friction force is static and is the minimum friction force required to prevent the ball from slipping.
|
|
Work and power in rotational motion |
 |
|
 |
|
|