A bowling ball encounters a 0.760 vertical rise on the way bac to the ball  rack in  accordance with the attached drawing.  Ignore frictional forces and assume uniform distribution of mass in the ball, the translational speed of the ball is 6,77 m/s at the bottom of the rise. Find the translational speed at the top

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A bowling ball encounters a 0.760 vertical rise on the way bac to the ball  rack in  accordance with the attached drawing.  Ignore frictional forces and assume uniform distribution of mass in the ball, the translational speed of the ball is 6,77 m/s at the bottom of the rise. Find the translational speed at the top

The image shows a diagram involving two rolling balls on a horizontal surface. The key components include:

- A sphere on the left with an arrow indicating rotation in a clockwise direction.
- The sphere on the right is located on an elevated platform with a height of 0.70 meters.
- Both spheres are depicted with arrows to emphasize motion or force applied.

This diagram could represent a physics concept such as rotational motion, gravitational potential energy, or the conservation of mechanical energy, illustrating how objects behave when encountering differences in elevation while in motion.
Transcribed Image Text:The image shows a diagram involving two rolling balls on a horizontal surface. The key components include: - A sphere on the left with an arrow indicating rotation in a clockwise direction. - The sphere on the right is located on an elevated platform with a height of 0.70 meters. - Both spheres are depicted with arrows to emphasize motion or force applied. This diagram could represent a physics concept such as rotational motion, gravitational potential energy, or the conservation of mechanical energy, illustrating how objects behave when encountering differences in elevation while in motion.
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