Chapter 12: Q. 12 (page 294)
A drum major twirls a 96 -cm-long, 400g baton about its center of mass at 100 rpm. What is the baton's rotational kinetic energy?
Short Answer
The rotational kinetic energy of the baton is
Chapter 12: Q. 12 (page 294)
A drum major twirls a 96 -cm-long, 400g baton about its center of mass at 100 rpm. What is the baton's rotational kinetic energy?
The rotational kinetic energy of the baton is
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Get started for freeFIGURE CP12.89 shows a cube of mass m sliding without frictionat speed v0. It undergoes a perfectly elastic collision with the bottom tip of a rod of length d and mass M = 2m. The rod is pivoted about a frictionless axle through its center, and initially it hangs straight down and is at rest. What is the cube’s velocity— both speed and direction—after the collision?
In FIGURE CP12.88, a 200 g toy car is placed on a narrow 60-cm-diameter track with wheel grooves that keep the car going in a circle. The 1.0 kg track is free to turn on a frictionless, vertical axis. The spokes have negligible mass. After the car’s switch is turned on, it soon reaches a steady speed of 0.75 m/s relative to the track. What then is the track’s angular velocity, in rpm?
A toy gyroscope has a ring of mass M and radius R attached to the axle by lightweight spokes. The end of the axle is distance R from the center of the ring. The gyroscope is spun at angular velocity v, then the end of the axle is placed on a support that allows the gyroscope to precess. a. Find an expression for the precession frequency Ω in terms of M, R, v, and g. b. A 120 g, 8.0-cm-diameter gyroscope is spun at 1000 rpm and allowed to precess. What is the precession period?
The four masses shown in FIGURE EX12.13 are connected by massless, rigid rods.
a. Find the coordinates of the center of mass.
b. Find the moment of inertia about an axis that passes through mass A and is perpendicular to the page.
Determine the moment of inertia about the axis of the object shown in FIGURE P12.51.
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