A 5.00-g bullet moving with an initial speed of vo=430 m/s is fired into and passes through a 1.00-kg block, as in the figure below. The block, initially at rest on a frictionless horizontal surface, is connected to a spring with a spring constant of 915 N/m. 5.00 cm (a) If the block moves 5.00 cm to the right after impact, find the speed at which the bullet emerges from the block. 1.51 Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. m/s (b) If the block moves 5.00 cm to the right after impact, find the mechanical energy lost in the collision. 430 86

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A 5.00-g bullet moving with an initial speed of vo 430 m/s is fired into and passes through a 1.00-kg block, as in the figure
below. The block, initially at rest on a frictionless horizontal surface, is connected to a spring with a spring constant of 915 N/m.
5.00 cm
(a) If the block moves 5.00 cm to the right after impact, find the speed at which the bullet emerges from the block.
1.51
x
Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step:
carefully. m/s
(b) If the block moves 5.00 cm to the right after impact, find the mechanical energy lost in the collision.
430 86
x
Your response is within 10% of the correct
Transcribed Image Text:H A 5.00-g bullet moving with an initial speed of vo 430 m/s is fired into and passes through a 1.00-kg block, as in the figure below. The block, initially at rest on a frictionless horizontal surface, is connected to a spring with a spring constant of 915 N/m. 5.00 cm (a) If the block moves 5.00 cm to the right after impact, find the speed at which the bullet emerges from the block. 1.51 x Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step: carefully. m/s (b) If the block moves 5.00 cm to the right after impact, find the mechanical energy lost in the collision. 430 86 x Your response is within 10% of the correct
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