Figure 1 what minimum height h must the track have for the marble to make it around the loop the loop without falling off.
A marble rolls down a track and around a loop the loop.
As the marble rolls down the hill its potential energy is converted to kinetic energy its height decreases but its velocity increases.
The marble has mass m and radius r.
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The marble rolls down a track and around a loop the loop of radius.
What minimum height h must the track have for the marble to make it around the loop the loop without falling off.
Figure cp12 85 shows a triangular block of swiss cheese sitting on a cheese board.
The marble has mass m and radius r.
What minimum height must the track have for the marble to make it around the loop the loop without falling off.
The marble rolls down the track and around a loop the loop of radius r.
The marble rolls down the track and around a loop the loop of radius r.
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The loop has a radius of r.
The marble rolls down the track and around a loop the loop of radius r.
The marble rolls down the track shown in figure cp12 84 and around a loop the loop of radius r.
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The marble has mass m and radius r.
What minimum height h must the track have for the marble to make it around the loop the loop without falling off.
When the marble goes back up the loop its height increases.
The marble has mass m and radius r.
To make that loop the centripetal force should be equal to the weight of the marble thus the centripetal acceleration and the velocity at the top of the loop is given by mg m ac m v 2 r v.
That is the minimum value of h if the marble is to reach the highest point of the loop without leaving the track.
A marble of mass m and radius r rolls along the looped rough track.