A 500 kg block is moving @ vo = 6.00 m/s along a frictionless Horizontal surface toward a spring with force constant k = 500- that is attached to the wall. The spring has negligible mass. What is the maximum compression of the spring i.e. how much will the spring compress before the block rebounds? Hint: use work – KE theorem.

Principles of Physics: A Calculus-Based Text
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Chapter7: Conservation Of Energy
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A 500 kg block is moving @ vo = 6.00 m/s along a frictionless Horizontal surface toward a
spring with force constant k = 500 that is attached to the wall. The spring has negligible
mass. What is the maximum compression of the spring i.e. how much will the spring compress
before the block rebounds? Hint: use work – KE theorem.
Transcribed Image Text:A 500 kg block is moving @ vo = 6.00 m/s along a frictionless Horizontal surface toward a spring with force constant k = 500 that is attached to the wall. The spring has negligible mass. What is the maximum compression of the spring i.e. how much will the spring compress before the block rebounds? Hint: use work – KE theorem.
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