The figure shows a barbell composed of two identical, uniform spherical masses and a steel rod. The sphere's centers are separated by 2 m and each sphere has mass M = 35 kg and radius R = 0.28 m. The rod's mass is m = 35 kg. Find the barbell's moment of inertia about an axis perpendicular to the rod's length and passing through the rod's center.

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Chapter10: Fixed-axis Rotation
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Problem 112AP: A system of point particles is rotating about a fixed axis at 4 rev/s. The particles are fixed with...
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The figure shows a barbell composed of two identical, uniform spherical masses and
a steel rod. The sphere's centers are separated by 2 m and each sphere has mass
M = 35 kg and radius R = 0.28 m. The rod's mass is m = 35 kg.
Find the barbell's moment of inertia about an axis perpendicular to the rod's length
and passing through the rod's center.
I=
=
kg m²
Transcribed Image Text:The figure shows a barbell composed of two identical, uniform spherical masses and a steel rod. The sphere's centers are separated by 2 m and each sphere has mass M = 35 kg and radius R = 0.28 m. The rod's mass is m = 35 kg. Find the barbell's moment of inertia about an axis perpendicular to the rod's length and passing through the rod's center. I= = kg m²
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