Nonuniform ball. In the figure, a ball of mass M and radius R rolls smoothly from rest down a ramp and onto a circular loop of radius 0.47 m. The initial height of the ball is h = 0.39 m. At the loop bottom, the magnitude of the normal force on the ball is 2.0 Mg. The ball consists of an outer spherical shell (of a certain uniform density) that is glued to a central sphere (of a different uniform density). The rotational inertia of the ball can be expressed in the general form 1 = BMR2, but 3 is not 0.4 as it is for a ball of uniform density. Determine 3. Number Units

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter10: Rotational Motion
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Nonuniform ball. In the figure, a ball of mass M and radius R rolls smoothly from rest down a ramp and onto a circular loop of radius 0.47
m. The initial height of the ball is h = 0.39 m. At the loop bottom, the magnitude of the normal force on the ball is 2.0 Mg. The ball
consists of an outer spherical shell (of a certain uniform density) that is glued to a central sphere (of a different uniform density). The
rotational inertia of the ball can be expressed in the general form 1 = BMR2, but 3 is not 0.4 as it is for a ball of uniform density.
Determine 3.
Number i
eTextbook and Media
Units
Transcribed Image Text:Nonuniform ball. In the figure, a ball of mass M and radius R rolls smoothly from rest down a ramp and onto a circular loop of radius 0.47 m. The initial height of the ball is h = 0.39 m. At the loop bottom, the magnitude of the normal force on the ball is 2.0 Mg. The ball consists of an outer spherical shell (of a certain uniform density) that is glued to a central sphere (of a different uniform density). The rotational inertia of the ball can be expressed in the general form 1 = BMR2, but 3 is not 0.4 as it is for a ball of uniform density. Determine 3. Number i eTextbook and Media Units
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