9. A block initially at rest is attached to a spring and has a bullet shot through it. The 5 gram bullet passes at 400 m/s through the 1 kg block which sits on a frictionless surface. The spring (spring constant 841 N/m) and block get compressed by d = 0.05 m by the time the bullet makes it through the block. Find a) how fast the bullet is going when it gets out the other side of the block and b) how much energy is lost during the collision. Vi wwwwwww

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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9. A block initially at rest is attached to a spring and has a bullet shot through it. The
5 gram bullet passes at 400 m/s through the 1 kg block which sits on a
frictionless surface. The spring (spring constant 841 N/m) and block get
compressed by d = 0.05 m by the time the bullet makes it through the block. Find
a) how fast the bullet is going when it gets out the other side of the block and b)
how much energy is lost during the collision.
www
Transcribed Image Text:9. A block initially at rest is attached to a spring and has a bullet shot through it. The 5 gram bullet passes at 400 m/s through the 1 kg block which sits on a frictionless surface. The spring (spring constant 841 N/m) and block get compressed by d = 0.05 m by the time the bullet makes it through the block. Find a) how fast the bullet is going when it gets out the other side of the block and b) how much energy is lost during the collision. www
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