1. A ball with a mass of 10.0 g hits a 5.0 kg block of wood...
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1. A ball with a mass of 10.0 g hits a 5.0 kg block of wood tied to a string, as shown. You may assume that there is no friction from the string. The ball hits the block in a completely inelastic collision, causing the block to rise to a maximum height of 8.0 cm. Find the initial horizontal speed of the ball. You may assume that the string is very long Til Ah = 8.0 cm Press here for long description 2.A 1.2 kg cart moving at 6.0 m/s [E] collides with a stationary 1.8 kg cart. The head-on collision is completely elastic and is cushioned by a spring. a. Find the velocity of each cart after the collision. b. The maximum compression of the spring during the collision is 2.0 cm. Find the spring constant. 1. A ball with a mass of 10.0 g hits a 5.0 kg block of wood tied to a string, as shown. You may assume that there is no friction from the string. The ball hits the block in a completely inelastic collision, causing the block to rise to a maximum height of 8.0 cm. Find the initial horizontal speed of the ball. You may assume that the string is very long Til Ah = 8.0 cm Press here for long description 2.A 1.2 kg cart moving at 6.0 m/s [E] collides with a stationary 1.8 kg cart. The head-on collision is completely elastic and is cushioned by a spring. a. Find the velocity of each cart after the collision. b. The maximum compression of the spring during the collision is 2.0 cm. Find the spring constant.
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Id be glad to help you with these physics problems involving elastic collisions Problem 1 Given Ball mass 100 g 001 kg Block mass 50 kg Frictionless string Completely inelastic collision Blocks maximu... View the full answer
Related Book For
University Physics with Modern Physics
ISBN: 978-0321696861
13th edition
Authors: Hugh D. Young, Roger A. Freedman, A. Lewis Ford
Posted Date:
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