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The 1-kg ball is released from rest when the cord is horizontal. It collided with the 4-kg block B which is initially at rest. After collision a minion pushes the block at the opposite direction with a force P = (5t+1) N, where t is in seconds. Determine the time it would take for the block to stop. Take e = 0.5 and neglect the friction between the block and the floor. A 2 m 45⁰ /1m d P = (5t +1) N, B O The 1-kg ball is released from rest when the cord is horizontal. It collided with the 4-kg block B which is initially at rest. After collision a minion pushes the block at the opposite direction with a force P = (5t + 1) N, where t is in seconds. Determine the time it would take for the block to stop. Take e = 0.5 and neglect the friction between the block and the floor. A 2 m 45⁰ /1m d P = (5t +1) N, B O The 1-kg ball is released from rest when the cord is horizontal. It collided with the 4-kg block B which is initially at rest. After collision a minion pushes the block at the opposite direction with a force P = (5t+1) N, where t is in seconds. Determine the time it would take for the block to stop. Take e = 0.5 and neglect the friction between the block and the floor. A 2 m 45⁰ /1m d P = (5t +1) N, B O The 1-kg ball is released from rest when the cord is horizontal. It collided with the 4-kg block B which is initially at rest. After collision a minion pushes the block at the opposite direction with a force P = (5t + 1) N, where t is in seconds. Determine the time it would take for the block to stop. Take e = 0.5 and neglect the friction between the block and the floor. A 2 m 45⁰ /1m d P = (5t +1) N, B O
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Related Book For
Fundamentals of Ethics for Scientists and Engineers
ISBN: 978-0195134889
1st Edition
Authors: Edmund G. Seebauer, Robert L. Barry
Posted Date:
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