This time the magnet has mass 7.49 kg and the force pulling it to the right is 156.6 N. When the magnet hits the floor, it continues being pulled to the right by the same magnetic force as before. The coefficient of kinetic friction between the magnet and the floor is 0.341. What will the magnets acceleration be as It slides to the right along the floor? (Assume static friction is overcome and the magnet will slide.)

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter5: The Laws Of Motion
Section: Chapter Questions
Problem 16P: An iron bolt of mass 65.0 g hangs from a string 35.7 cm long. The top end of the string is fixed....
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OK, one more time. This time the magnet has mass 7.49 kg and the force pulling it to the right is 156.6 N. When the
magnet hits the floor, it continues being pulled to the right by the same magnetic force as before. The coefficient of
kinetic friction between the magnet and the floor is 0.341. What will the magnets acceleration be as It slides to the right
along the floor? (Assume static friction is overcome and the magnet will slide.)
A) 12.29 m/s^2
B) 8.4 m/S^2
C) 11.56 m/S^2
D) 8.78 m/S^2

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