A boy with a mass of 31.0 kg slides down the slide shown below. At the moment shown, the radius of the slide is 1.29 m, his angular position is determined by 0 = (0.65t) rad, and his vertical position is determined by z = (-0.4t) m, where t is in seconds. What is the radial force, F, acting on the boy at t = 1.1 s? Assume the boy's size can be neglected.

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter12: Rotation I: Kinematics And Dynamics
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Problem 9PQ: Jupiter rotates about its axis once every 9 hours 55 minutes. a. What is Jupiter's angular speed of...
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A boy with a mass of 31.0 kg slides down the slide shown below. At the
moment shown, the radius of the slide is 1.29 m, his angular position is
determined by 0 = (0.65t) rad, and his vertical position is determined
by 2 = (-0.4t) m, where t is in seconds. What is the radial force, F,
acting on the boy at t = 1.1 s? Assume the boy's size can be
neglected.
Transcribed Image Text:A boy with a mass of 31.0 kg slides down the slide shown below. At the moment shown, the radius of the slide is 1.29 m, his angular position is determined by 0 = (0.65t) rad, and his vertical position is determined by 2 = (-0.4t) m, where t is in seconds. What is the radial force, F, acting on the boy at t = 1.1 s? Assume the boy's size can be neglected.
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