Four small spheres, each of which you can regard as a point of mass 0.400 kg, are arranged in a square 0.700 m on a side and connected by extremely light rods. Find the moment of inertia of the system about an axis (a) through the center of the square, perpendicular to its plane (an axis through point O in the figure);

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
Section: Chapter Questions
Problem 4CQ: Which of the entries in Table 10.2 applies to finding the moment of inertia (a) of a long, straight...
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  1. Four small spheres, each of which you can regard as a point of mass 0.400 kg, are arranged in a square 0.700 m on a side and connected by extremely light rods. Find the moment of inertia of the system about an axis (a) through the center of the square, perpendicular to its plane (an axis through point O in the figure);

(b) bisecting two opposite sides of the square (an axis along the line AB in the figure); (c) that passes through the centers of the upper left and lower right spheres and through point O.

(Note: Change the value in the figure)

Four small spheres, each of which you can regard as a point of
mass 0.400 kg, are arranged in a square 0.700 m on a side and
connected by extremely light rods. Find the moment of inertia of
the system about an axis (a) through the center of the square,
perpendicular to its plane (an axis through point O in the figure);
(b) bisecting two opposite sides of the square (an axis along the
line AB in the figure); (c) that passes through the centers of the
upper left and lower right spheres and through point O.
(Note: Change the value in the figure)
0.400 m
0.200 kg
-B
Transcribed Image Text:Four small spheres, each of which you can regard as a point of mass 0.400 kg, are arranged in a square 0.700 m on a side and connected by extremely light rods. Find the moment of inertia of the system about an axis (a) through the center of the square, perpendicular to its plane (an axis through point O in the figure); (b) bisecting two opposite sides of the square (an axis along the line AB in the figure); (c) that passes through the centers of the upper left and lower right spheres and through point O. (Note: Change the value in the figure) 0.400 m 0.200 kg -B
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