A horizontal platform in the shape of a circular disk rotates on a frictionless bearing about a vertical axle through the center of the disk. The platform has a radius of 4.08 m and a rotational inertia of 365 kg·m2 about the axis of rotation. A 53.9 kg student walks slowly from the rim of the platform toward the center. If the angular speed of the system is 1.43 rad/s when the student starts at the rim, what is the angular speed when she is 0.609 m from the center?

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Chapter1: Units, Trigonometry. And Vectors
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A horizontal platform in the shape of a circular disk rotates on a frictionless bearing about a vertical axle through the center of the disk. The platform has a radius of 4.08 m and a rotational inertia of 365 kg·m2 about the axis of rotation. A 53.9 kg student walks slowly from the rim of the platform toward the center. If the angular speed of the system is 1.43 rad/s when the student starts at the rim, what is the angular speed when she is 0.609 m from the center?

A horizontal platform in the shape of a circular disk rotates on a frictionless bearing about a vertical
axle through the center of the disk. The platform has a radius of 4.08 m and a rotational inertia of 365
kg-m2 about the axis of rotation. A 53.9 kg student walks slowly from the rim of the platform toward
the center. If the angular speed of the system is 1.43 rad/s when the student starts at the rim, what is
the angular speed when she is 0.609 m from the center?
Number
i
Units
Transcribed Image Text:A horizontal platform in the shape of a circular disk rotates on a frictionless bearing about a vertical axle through the center of the disk. The platform has a radius of 4.08 m and a rotational inertia of 365 kg-m2 about the axis of rotation. A 53.9 kg student walks slowly from the rim of the platform toward the center. If the angular speed of the system is 1.43 rad/s when the student starts at the rim, what is the angular speed when she is 0.609 m from the center? Number i Units
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