A 3.00 g bullet is fired horizontally into a 1.00 kg wooden block resting on a horizontal surface. The coefficient of kinetic friction between block and surface is 0.25. The bullet remains embedded in the block, which is observed to slide 0.20 m along the surface before stopping. What was the initial speed of the bullet? Determine how much thermal energy was generated during the collision. ΔΤΕ -

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter8: Momentum And Collisions
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A 3.00 g bullet is fired horizontally into a 1.00 kg wooden block resting on a horizontal surface. The coefficient of
kinetic friction between block and surface is 0.25. The bullet remains embedded in the block, which is observed to
slide 0.20 m along the surface before stopping. What was the initial speed of the bullet?
Determine how much thermal energy was generated during the collision.
ATE =
Transcribed Image Text:A 3.00 g bullet is fired horizontally into a 1.00 kg wooden block resting on a horizontal surface. The coefficient of kinetic friction between block and surface is 0.25. The bullet remains embedded in the block, which is observed to slide 0.20 m along the surface before stopping. What was the initial speed of the bullet? Determine how much thermal energy was generated during the collision. ATE =
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