9) A time-varying horizontal force F(t) = Art + Bi2 acts for 0.500 s on a 12.25-kg object, starting at time t = 1.00 s. In the SI system, A has the numerical value 4.50 and B has the numerical value 8.75.

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Chapter6: Momentum And Collisions
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Please help me with these 3 home work problem.
9) A time-varying horizontal force F(t) = Art + Bt2 acts for 0.500 s on a 12.25-kg object, starting
at time t = 1.00 s. In the SI system, 4 has the numerical value 4.50 and B has the numerical value
8.75.
What impulse does this force impart to the object?
10) A wheel has a radius of 0.40 m and is mounted on frictionless bearings. A block is suspended
from a rope that is wound on the wheel and attached to it (see figure). The wheel is released from
rest and the block descends 1.5 m in 2.00 s without any slipping of the rope. The tension in the
rope during the descent of the block is 20 N. What is the moment of inertia of the wheel?
0.40 m
1.5 m
A) 3.5 kg · m2
B) 3.7 kg m2
C) 3.9 kg · m2
D) 4.1 kg m2
E) 4.3 kg m2
11) A solid sphere, a uniform disk, and a hollow hoop all having identical masses and radii are
started from rest at the top of an inclined plane simultaneously. The sphere reaches the bottom
first. Using Newton's Laws and rotational dynamics show why this must be true. (Hint: Draw a
FBD showing the forces present, and determine which are responsible for translation and which
for rotation. I for the hoop = MR², I for the disk is 1/2MR? and I for the solid sphere is 2/5MR?.
Base you answer on the acceleration of the center of masses of each object.)
Transcribed Image Text:9) A time-varying horizontal force F(t) = Art + Bt2 acts for 0.500 s on a 12.25-kg object, starting at time t = 1.00 s. In the SI system, 4 has the numerical value 4.50 and B has the numerical value 8.75. What impulse does this force impart to the object? 10) A wheel has a radius of 0.40 m and is mounted on frictionless bearings. A block is suspended from a rope that is wound on the wheel and attached to it (see figure). The wheel is released from rest and the block descends 1.5 m in 2.00 s without any slipping of the rope. The tension in the rope during the descent of the block is 20 N. What is the moment of inertia of the wheel? 0.40 m 1.5 m A) 3.5 kg · m2 B) 3.7 kg m2 C) 3.9 kg · m2 D) 4.1 kg m2 E) 4.3 kg m2 11) A solid sphere, a uniform disk, and a hollow hoop all having identical masses and radii are started from rest at the top of an inclined plane simultaneously. The sphere reaches the bottom first. Using Newton's Laws and rotational dynamics show why this must be true. (Hint: Draw a FBD showing the forces present, and determine which are responsible for translation and which for rotation. I for the hoop = MR², I for the disk is 1/2MR? and I for the solid sphere is 2/5MR?. Base you answer on the acceleration of the center of masses of each object.)
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