*Chapter 11, Problem 60 In the figure, a 8.08 g bullet is fired into a 0.231 kg block attached to the end of a 0.647 m nonuniform rod of mass 0.585 kg. The block-rod-bullet system then rotates in the plane of the figure, about a fixed axis at A. The rotational inertia of the rod alone about A is 0.0377 kg-m2. Treat the block as a particle. (a) What then is the rotational inertia of the block-rod-bullet system about point A? (b) If the angular speed of the system about A just after impact is 8.47 rad/s, what is the bullet's speed just before impact? A Rod Block Bullet (a) Number *1 Units (b) Number *2 Units

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Chapter8: Rotational Equilibrium And Rotational Dynamics
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*Chapter 11, Problem 60
In the figure, a 8.08 g bullet is fired into a 0.231 kg block attached to the end of a 0.647 m nonuniform rod of mass
0.585 kg. The block-rod-bullet system then rotates in the plane of the figure, about a fixed axis at A. The rotational
inertia of the rod alone about A is 0.0377 kg-m2. Treat the block as a particle. (a) What then is the rotational inertia of
the block-rod-bullet system about point A? (b) If the angular speed of the system about A just after impact is 8.47
rad/s, what is the bullet's speed just before impact?
A
Rod
Block
Bullet
(a) Number
*1 Units
(b) Number
*2 Units
Transcribed Image Text:*Chapter 11, Problem 60 In the figure, a 8.08 g bullet is fired into a 0.231 kg block attached to the end of a 0.647 m nonuniform rod of mass 0.585 kg. The block-rod-bullet system then rotates in the plane of the figure, about a fixed axis at A. The rotational inertia of the rod alone about A is 0.0377 kg-m2. Treat the block as a particle. (a) What then is the rotational inertia of the block-rod-bullet system about point A? (b) If the angular speed of the system about A just after impact is 8.47 rad/s, what is the bullet's speed just before impact? A Rod Block Bullet (a) Number *1 Units (b) Number *2 Units
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