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Map Sapling Learning macmillan learning While hauling a log in the back of a fla

ID: 1882767 • Letter: M

Question

Map Sapling Learning macmillan learning While hauling a log in the back of a flatbed truck, you are pulled over by the state police. Although the log can't roll sideways, the police claim that the log could have slid out the back of the truck when accelerating from rest. You claim that the truck couldn't possibly accelerate at the level needed to achieve such an effect. Regardless, the police write a ticket anyway and now your day in court is approaching e log has a mass of m 849 kg; the truck has a mass of M 8.60 x 103 kg. According to the truck manufacturer, the truck can accelerate from 0 to 55 mph in 24.0 seconds, but this does not account for the additional mass of the log. Calculate the minimum coefficient of static friction us needed to keep the log in the back of the truck Number According to the scientific literature, the coefficient of static friction between the log and the trailer bed should be roughly 0.840. Given this fact, answer the following There is little chance the log could have slid out the back The police officer is correct. The log posed a real danger O The results are not conclusive Evit

Explanation / Answer

Velocity, v = 55 mph = 24.6 m/s

Acceleration a = 24.6/24 = 1.025 m/s^2

Force F = ma = 8600 x 1.025 = 8815 N

With log:

Acceleration a = 8815/(849 + 8600) = 0.933 m/s^2

Frictional force = 0.933 x 849 = 792.03 N

792.03 = u x 849 x 9.8

u = 0.095

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