A shell fired from the ground explodes into two fragments A and B somewhere before the highest point of its trajectory. The fragment A immediately comes to an instantaneous rest and then falls. Knowing that horizontal range of the shell would have been R1, if it were not exploded, predict location of mass centre of the two fragments relative to the location of firing, when the fragment A hits the ground. A On the ground at a distance that is equal to R B In the air at a horizontal distance that is equal to R In the air at a horizontal distance that is less than R D In the air at a horizontal distance that is more than R

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Chapter6: Momentum, Impulse, And Collisions
Section: Chapter Questions
Problem 53P: A billiard ball moving at 5.00 m/s strikes a stationary ball of the same mass. Alter the collision,...
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A shell fired from the ground explodes into two fragments A and B somewhere
before the highest point of its trajectory. The fragment A immediately comes to an
instantaneous rest and then falls. Knowing that horizontal range of the shell would
have been R1, if it were not exploded, predict location of mass centre of the two
fragments relative to the location of firing, when the fragment A hits the ground.
On the ground at a distance that is equal to R
A
B
In the air at a horizontal distance that is equal to R
In the air at a horizontal distance that is less than R
D
In the air at a horizontal distance that is more than R
Transcribed Image Text:A shell fired from the ground explodes into two fragments A and B somewhere before the highest point of its trajectory. The fragment A immediately comes to an instantaneous rest and then falls. Knowing that horizontal range of the shell would have been R1, if it were not exploded, predict location of mass centre of the two fragments relative to the location of firing, when the fragment A hits the ground. On the ground at a distance that is equal to R A B In the air at a horizontal distance that is equal to R In the air at a horizontal distance that is less than R D In the air at a horizontal distance that is more than R
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