A 7.80-g bullet moving at 575 m/s penetrates a tree trunk to a depth of 5.50 cm. (a) Use work and energy considerations to find the average frictional force that stops the bullet. (b) Assuming the frictional force is constant, determine how much time elapses between the moment the bullet enters the tree and the moment it stops moving. 22

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Chapter7: Work And Kinetic Energy
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Kinetic energy and the work-energy theorem
15. A 7.80-g bullet moving at 575 m/s penetrates a tree trunk to
a depth of 5.50 cm. (a) Use work and energy considerations
to find the average frictional force that stops the bullet.
(b) Assuming the frictional force is constant, determine how
much time elapses between the moment the bullet enters the
tree and the moment it stops moving.
22
Transcribed Image Text:15. A 7.80-g bullet moving at 575 m/s penetrates a tree trunk to a depth of 5.50 cm. (a) Use work and energy considerations to find the average frictional force that stops the bullet. (b) Assuming the frictional force is constant, determine how much time elapses between the moment the bullet enters the tree and the moment it stops moving. 22
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