Allow M to be mass of a rod and let L be the length. Solve the given problem. Given: Part A) Let's say a rod of mass and length spun around a pOint L/3 from one end, look for the determination of the moment of inertia. Part B) A distance of L/6 from the pivot point was given to the center of this shape, find the angular velocity if the rod is allowed to rotate because of the gravitation thats from a horizontal position to a vertical position.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Allow M to be mass of a rod and let L be the length.
Solve the given problem.
Given:
Part A) Let's say a rod of mass and length spun around a point L/3 from one end, look
for the determination of the moment of inertia.
Part B) A distance of L/6 from the pivot point was given to the center of this shape, find
the angular velocity if the rod is allowed to rotate because of the gravitation thats from
a horizontal position to a vertical position.
Transcribed Image Text:Allow M to be mass of a rod and let L be the length. Solve the given problem. Given: Part A) Let's say a rod of mass and length spun around a point L/3 from one end, look for the determination of the moment of inertia. Part B) A distance of L/6 from the pivot point was given to the center of this shape, find the angular velocity if the rod is allowed to rotate because of the gravitation thats from a horizontal position to a vertical position.
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