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What will be the velocity time graph of a ball falling from a height before hitting the ground look like?

What will be the velocity time graph of a ball falling from a height before hitting the ground look like?

What will be the velocity v/s time graph of a ball falling from a height before hitting the ground look like? Explanation: As the ball falls down, its velocity increases. Hence the graph looks like a straight line with positive slope.

What will be the velocity vs time graph of a ball falling?

Observe that the line on the graph is a straight, diagonal line. As learned earlier, a diagonal line on a velocity versus time graph signifies an accelerated motion. Since a free-falling object is undergoing an acceleration (g = 9,8 m/s/s, downward), it would be expected that its velocity-time graph would be diagonal.

When a ball is dropped from a height Its?

When a ball is dropped from a height, its speed increases gradually.

What will be the velocity V’s time graph of a ball falling?

Why does a ball dropped from a certain height never comes back to the original position after striking the ground?

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When you drop the ball the force is mg all along the trajectory, even when going up. There is no reason why the reaction force should bounce the ball back to the original height. It will only happen when there is conservation of mechanical energy.

What happens when a ball is dropped from height h?

A ball is dropped from height h. It collides with the ground elastically. How do I draw the position time, acceleration time, and velocity time graph? Some what like this… Source GIREP 98 Take ground as zero displacement.

How do you find the momentum of a dropped ball?

Define time t=0 to be before the balls are dropped. Time t=1 is just before the large ball collides with the ground. Time t=2 is just after the large ball collides with the small ball. To find momentum at t=1, velocity is needed. Velocity will be the same for both balls, since they are dropped form the same height.

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Is the velocity of a dropped ball the same for everyone?

Velocity will be the same for both balls, since they are dropped form the same height. Considering only the larger ball: V 1 will also be the same for the smaller ball. When the collision occurs, the momentum immediately before and after the collision (t 1 and t 2, respectively) should stay constant.

How do you determine the speed of the second ball?

A ball is dropped from rest from a height h above the ground. Another ball is thrown vertically upward from the ground at the instant the first ball is released. Determine the speed of the second ball if the two balls are to meet at a height h/2 above the ground.