A 0.0155-kg bullet is fired horizontally into a 2.14-kg wooden block attached to one end of a massless, horizontal spring (k = 807 N/m). The other end of the spring is fixed in place, and the spring is unstrained initially. The block rests on a horizontal, frictionless surface. The bullet strikes the block perpendicularly and quickly comes to a halt within it. As a result of this completely inelastic collision, the spring is compressed along its axis and causes the block/bullet to oscillate with an amplitude of 0.261 m. What is the speed of the bullet? m V

Physics for Scientists and Engineers: Foundations and Connections
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Chapter11: Collisions
Section: Chapter Questions
Problem 67PQ: Assume the pucks in Figure P11.66 stick together after theircollision at the origin. Puck 2 has four...
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A 0.0155-kg bullet is fired horizontally into a 2.14-kg wooden block attached to one end of a massless, horizontal spring (k = 807 N/m).
The other end of the spring is fixed in place, and the spring is unstrained initially. The block rests on a horizontal, frictionless surface.
The bullet strikes the block perpendicularly and quickly comes to a halt within it. As a result of this completely inelastic collision, the
spring is compressed along its axis and causes the block/bullet to oscillate with an amplitude of 0.261 m. What is the speed of the
bullet?
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Transcribed Image Text:A 0.0155-kg bullet is fired horizontally into a 2.14-kg wooden block attached to one end of a massless, horizontal spring (k = 807 N/m). The other end of the spring is fixed in place, and the spring is unstrained initially. The block rests on a horizontal, frictionless surface. The bullet strikes the block perpendicularly and quickly comes to a halt within it. As a result of this completely inelastic collision, the spring is compressed along its axis and causes the block/bullet to oscillate with an amplitude of 0.261 m. What is the speed of the bullet? wwwwww wwwwwww
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