Problem 8: A small bug of mass m = 0.025 kg is moving at a speed of vo = 9.03 m/s when it collides and sticks to the edge of a uniform solid cylinder of mass M = 0.665 kg and radius R = 0.086 m. The cylinder is initially at rest and is free to rotate about an fricionless axle running through its center and perpendicular to the page (see figure). The moment of inertia of a uniform cylinder is I = (1/2)MR² Vo Before After

College Physics
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Problem 8: A small bug of mass m = 0.025 kg is moving at a speed of vo = 9.03 m/s when it collides and sticks to the edge of a
uniform solid cylinder of mass M = 0.665 kg and radius R = 0.086 m. The cylinder is initially at rest and is free to rotate about an
fricionless axle running through its center and perpendicular to the page (see figure). The moment of inertia of a uniform cylinder is
I = (1/2)MR².
•
vo.
Before
After
Transcribed Image Text:Problem 8: A small bug of mass m = 0.025 kg is moving at a speed of vo = 9.03 m/s when it collides and sticks to the edge of a uniform solid cylinder of mass M = 0.665 kg and radius R = 0.086 m. The cylinder is initially at rest and is free to rotate about an fricionless axle running through its center and perpendicular to the page (see figure). The moment of inertia of a uniform cylinder is I = (1/2)MR². • vo. Before After
Part (d) Calculate the angular velocity o of the cylinder after the collision in rad/s.
Numeric A numeric value is expected and not an expression.
(0)=
Transcribed Image Text:Part (d) Calculate the angular velocity o of the cylinder after the collision in rad/s. Numeric A numeric value is expected and not an expression. (0)=
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