Dropping a Ball on a Frictionless Plane

AI Thread Summary
A ball dropped from 10 meters with an initial speed of 0 m/s impacts a frictionless plane, which absorbs 20% of its incoming velocity. After 10 seconds, the ball reaches a velocity of 7.70 m/s post-impact, assuming it does not bounce. The discussion raises questions about the implications of a frictionless surface, particularly regarding the ball's ability to roll. Participants clarify that without friction, the ball cannot roll as there is no torque to facilitate movement. The conclusion emphasizes that a truly frictionless surface would prevent the ball from rolling at all.
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Homework Statement



A ball is dropped from 10m at a speed of 0m/s. Ground is a frictionless plane (0, 0, 0) with a normal of (0, 0, 1). Ground absorbs 20% of incoming velocity. Find position of ball after 20 seconds.


Homework Equations



If the ball hits a frictionless plane would it even bounce, or would it hit take the 20% velocity reduction and go for remaining seconds.

The Attempt at a Solution



So after ball hitting ground I am calculating it having a velocity of 7.70m/s, after taking 10 seonds to hit ground and then taking the 20% reduction. This is assuming it doesn't bounce and is going to roll at the 7.70m/s for the remaining seconds.


thanks
 
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how is it going to roll if it is frictionless?
 
Tzim said:
how is it going to roll if it is frictionless?


If it was frictionless, wouldn't it roll better, it would have no friction acting upon it to slow it down. right? or am I misunderstanding the of a frictionless?
 
If it is frictionlss there is no force that has a torque.So it cannot roll.I think so
 
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