Deck 8: Rotational Motion of Solid Objects

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سؤال
A flywheel is used to minimize changes in rotational velocity as the torque or the load changes. The rotational inertia of a flywheel should be chosen to be

A) anything-it doesn't matter.
B) as small as possible.
C) as large as possible.
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سؤال
You stand with your heels against a wall and bend ninety degrees forward at the waist.

A) You fall forward because your center of gravity moves ahead of your base of support.
B) You fall forward because of the momentum you gain when you move.
C) You are able to maintain your balance.
D) You fall forward because the muscles in your feet aren't strong enough to stop you.
سؤال
In a stable stack of identical boards at the edge of a table, the center of gravity of the top board

A) must lie above the table.
B) need not lie over anything.
C) must lie above the bottom board.
D) must lie above the next lower board.
سؤال
The bigger diameter gears on the rear wheel of a multi-speed bike allow the rider to

A) increase the moment of inertia of the wheel.
B) exert more force on the wheel.
C) exert more torque on the wheel.
D) decrease the moment of inertia of the wheel.
سؤال
A torque acting on a body tends to produce

A) equilibrium.
B) linear velocity.
C) a new center of gravity.
D) angular rotation.
سؤال
Using a longer-handled wrench to loosen a tight nut allows you to

A) exert more force on the nut.
B) apply more torque to the nut.
C) increase the moment of inertia of the nut.
D) pull harder on the wrench.
سؤال
A constant torque is applied to a flywheel. Which of the following mechanical quantities will be constant?

A) Rotational energy
B) Angular momentum
C) Rotational velocity
D) Rotational acceleration
E) Linear velocity of a particle on the rim
سؤال
When a bicycle pedal is at the top of its motion, you can exert the greatest torque on the crank by

A) pushing straight down on the pedal with your foot.
B) hooking your toes under the pedal and pulling upward.
C) pushing straight forward on the pedal with your foot.
سؤال
Three different bodies-a uniform sphere, a uniform disk, and a hoop-all have same radius and same mass. The body with the largest rotational inertia will be

A) the sphere.
B) the disk.
C) the hoop.
D) none, as all have the same value of rotational inertia.
سؤال
The rotational inertia of an object depends on

A) its color.
B) how fast it is spinning.
C) how its mass is distributed about the spin axis.
D) the amount of torque applied to it.
E) none of these.
سؤال
Because the rotational inertia is higher, it is hardest in springboard diving to perform a forward somersault in

A) the straight position (no bending at knees or waist).
B) the pike position (bending at the waist but not the knees).
C) the tuck position (bending at both the waist and knees).
سؤال
A figure skater is spinning with her arms extended. She now pulls her arms close to her body. What happens?

A) Her angular acceleration decreases.
B) Her rotational inertia decreases.
C) The net external torque on her increases.
D) Her lever arm gets shorter.
سؤال
A hoop and a sphere have the same diameter and the same mass. Which one will have a larger rotational inertia?

A) The hoop.
B) The sphere.
C) Both will require the same time to reach the bottom.
سؤال
A dancer begins performing a pirouette with arms extended. (A pirouette is a complete spin about a vertical axis.) This motion is completed most easily when the rotational inertia is decreased by

A) bending at the waist at a right angle.
B) extending the arms and one leg straight out to the sides.
C) holding the arms straight up and extending one foot straight out to the side.
D) bringing the arms and legs in a line with the body.
سؤال
An isolated object is initially spinning at a constant speed. Then, although no external forces act upon it, its rotational speed increases. This must be due to

A) an increase in the moment of inertia.
B) an increase in the mass.
C) an increase in the angular momentum.
D) a decrease in the moment of inertia.
E) impossible, angular momentum conservation is violated.
سؤال
Three horses are side-by-side on a merry-go-round: one at the edge, one near the axis, and one in between. Each horse has the same angular speed. Which horse has the greatest linear speed?

A) The horse at the edge.
B) The horse in the middle.
C) The horse nearest the axis.
D) The linear speed is the same for all three horses.
سؤال
An object is moving in a horizontal circle, in a clockwise direction (as viewed from above). In which direction does its angular momentum vector point?

A) To the viewer's left
B) Away from the viewer
C) Toward the viewer
D) From the ball toward the center of the circle
سؤال
A solid disk and a hollow disk with the same mass and diameter are released together (from rest) to roll down an incline. The solid disk reaches the bottom first. From this information we can say that the angular acceleration was

A) larger for the hollow disk.
B) larger for the solid disk.
C) the same for both disks.
D) impossible to know without a measurement of time.
سؤال
A football thrown with a spinning motion is more stable than one thrown without spin because

A) there is no net torque on a spinning object.
B) air flows more easily around spinning objects.
C) the torque generated by the spinning action is conserved.
D) the angular momentum of a spinning object can only be changed by applying a torque.
سؤال
The angular momentum of an isolated object can be changed only by

A) changing its rotational inertia.
B) applying a torque.
C) applying a force along the axis of rotation.
سؤال
Which of the following is an appropriate unit for describing rotational acceleration?

A) m/s2
B) rad/min
C) rev/min
D) rev/m/s
E) rev/min2
سؤال
A solid disk and a hoop have different diameters but identical masses. Which one has a larger rotational inertia?

A) The solid disk.
B) The hoop.
C) It is impossible to know without knowing the diameters.
D) It is impossible to know without knowing the torques acting on the two objects.
سؤال
The angular momentum of a rotating body is conserved when

A) no net torque acts on the body.
B) no net force acts on the body.
C) when the body has a constant angular acceleration.
D) the shape of the body does not change.
سؤال
A merry-go-round, having a radius of 2.5 m, is set in motion starting from rest, by students applying a force of 500 N tangential to the rim of the wheel. After five seconds of torque, the students let go and measure the rotational speed: 1.25 rad/s. The rotational inertia of the merry-go-round is

A) 7.5 ×\times 102 kg m2.
B) 1.7 ×\times 103 kg m2.
C) 2.5 ×\times 103 kg m2.
D) 5.0 ×\times 103 kg m2.
E) 1.0 ×\times 104 kg m2.
سؤال
A gyroscope consists of a wheel mounted on an axle aligned along a north-south direction. The south end of the axle is suspended by a rope attached to the ceiling, and the north end is manually held at rest. The wheel is spinning rapidly, so that its angular momentum vector points north. Suddenly the north end is released. Since there is spin, the north end of the axle will begin to move

A) north.
B) east.
C) down.
D) west.
E) south.
سؤال
If you push directly on the handle of a closed door and it does not swing open, then

A) its rotational inertia must be much larger than your torque.
B) the net torque on the door must be zero.
C) the lever arm must be very small.
D) the angular momentum of the door is larger than your force.
سؤال
A moving bicycle exhibits less stability when the angular momentum of the wheels is less, which means

A) its forward speed is also slower.
B) its forward speed is faster.
C) the inverse of the forward speed equals the torque.
سؤال
The armature (or spinning portion) of a motor is accelerated uniformly from rest to a rotational velocity of 1500 rev/min in 10 seconds. The rotational acceleration of the motor is

A) 150 rad/s2.
B) 15.7 rad/s2.
C) 31.4 rad/s2.
D) 75 rad/s2.
E) zero.
سؤال
If there is a net torque on a wheel, then

A) there must be a net force on the wheel.
B) the wheel must have a nonzero angular acceleration.
C) the wheel cannot be spinning.
D) the angular momentum of the wheel cannot change direction.
سؤال
In using a long steel rod as a lever to move a large rock, where should the fulcrum be placed for a person to use the least amount of force to move the rock?

A) Close to the person.
B) Exactly halfway between the person and the rock.
C) Anywhere in between; it makes no difference.
D) Close to the rock.
سؤال
Torque in the metric system is measured in units of

A) N.
B) N s.
C) N rad.
D) N/m.
E) N m.
سؤال
The figure above shows two yo-yos that have the same mass and rotational inertia. The one on the right has a thicker axle than the one on the left. The torque produced by gravity is

A) larger for the yo-yo on the right.
B) larger for the yo-yo on the left.
C) the same for both yo-yos.
D) zero; there is no net torque on the yo-yos.
سؤال
A top of rotational inertia 4.0 kg m2 receives a torque of 2.4 Nm from a physics professor. The angular acceleration of the body will be

A) 1.2 rev/s2.
B) 6.0 rad/s2.
C) 1.0 rad/s2.
D) 6.0 rev/s2.
E) 0.6 rad/s2.
سؤال
If the net force on a body is zero, the net torque on the body is

A) always zero.
B) not necessarily zero.
C) certainly not zero.
سؤال
When an ice skater twirling on the point of a skate draws her arms in she ends up whirling faster. This is because

A) rotational energy is conserved.
B) linear momentum is conserved.
C) angular momentum is conserved.
D) a net external torque acts on the skater.
سؤال
A student plays on a see-saw with her experimental android robot, Robby. The student has a weight of 300 N and is seated 2.8 m from the axis of rotation. Robby balances her when he is seated 0.7 m from the axis. Robby's weight is

A) 1000 N.
B) 500 N.
C) 667 N.
D) 725 N.
E) 1200 N.
سؤال
It is possible using the analogies between linear motion and rotational motion to write an expression for rotational kinetic energy. The formula for rotational kinetic energy (assuming τ \tau is torque, α\alpha is angular acceleration, I is rotational inertia, and ω \omega is angular velocity) is

A) ½ τ \tau α\alpha 2.
B) ½ I α\alpha 2.
C) ½ I ω \omega 2.
D) ½ τ \tau ω \omega 2.
 <strong>It is possible using the analogies between linear motion and rotational motion to write an expression for rotational kinetic energy. The formula for rotational kinetic energy (assuming   \tau   is torque,  \alpha  is angular acceleration, I is rotational inertia, and   \omega   is angular velocity) is</strong> A) ½   \tau    \alpha <sup>2</sup>. B) ½ I  \alpha <sup>2</sup>. C) ½ I   \omega  <sup>2</sup>. D) ½   \tau     \omega  <sup>2</sup>.   <div style=padding-top: 35px>
سؤال
A wheel is spinning on an axle. The linear velocity of a point on the rim is simply the product of the radius times the rotational velocity, as long as the rotational velocity is measured in units of

A) deg/s.
B) rev/min.
C) rad/s.
D) rev/s.
E) deg/min.
سؤال
The rotational velocity of a 45 rev/min phonograph record in rad/s is approximately

A) 45 rad/s.
B) 4.7 rad/s.
C) 0.75 rad/s.
D) 283 rad/s.
E) 15.7 rad/s.
سؤال
If the net torque on a body is zero, the net force on the body is

A) always zero.
B) not necessarily zero.
C) certainly not zero.
سؤال
If a solid disk and a hoop are to have the same mass and rotational inertia, then the hoop must have a _________ radius.
سؤال
The advantage that a lever can give you is that

A) with a small force, you can move a large weight.
B) with a small lever, you can move a large weight.
C) with a large force, you can torque a large weight.
D) with a small torque, you can lift a large weight.
سؤال
Holding out your hands sideways helps you keep your balance along a narrow set of stepping-stones because

A) the arms outward balance your weight.
B) arms inward only add to your weight.
C) with arms outward, you've increased your total rotational inertia relative to the pivot point: your feet.
D) moving the arms outward puts a counter-torque on the stepping-stones.
Fill in the Blank Questions
سؤال
The stability of a bicycle is due to angular momentum of the wheels when the bicycle is moving forward. The stability is due to the net angular momentum vector, which

A) points upward, perpendicular to the surface of Earth, thereby canceling the weight of the bicycle and rider.
B) points to the rider's left.
C) increases when the bicycle slows down due to conservation of energy.
D) is actually zero, since the back wheel cancels the angular momentum of the front wheel.
سؤال
Just as torque is the rotational analogue of force in linear motion, rotational inertia is the rotational analogue of _______ in linear motion.
سؤال
When a mechanic uses an extension arm on his wrench to loosen a stubborn nut, he is exerting additional torque because of an increase in the _________________ (two words) of the force.
سؤال
The angular momentum of a rotating body is constant when the net _______________ on the body is zero.
سؤال
When a planet moves closer to the Sun in an elliptical orbit, its rotational inertia

A) does not change because the mass of the planet is constant.
B) gets smaller because its distance from the Sun is smaller.
C) gets smaller because the lever arm is shorter.
D) gets larger because the angular momentum must be conserved.
E) gets larger because the planet has more angular acceleration.
سؤال
If an object has an angular acceleration larger than zero, its angular __________ must be changing with time.
سؤال
In principle, a first-grader could measurably move the Earth if

A) she pushed her hardest on the Earth.
B) she had a long enough lever.
C) she ran her fastest opposite the spin of the Earth.
D) she was at the North Pole and had a bicycle wheel spinning opposite the spin of Earth.
سؤال
If the net force on a body is zero the net torque _______________________ (is always, is not necessarily, cannot be) zero.
سؤال
Even a little first-grader can stay up on a bicycle if he can get his bicycle moving fast enough because

A) the angular momentum of the wheels wants to stay horizontal, due to conservation of angular momentum.
B) the first-grader's weight causes a torque too small to make the bicycle fall sideways when moving.
C) pedaling faster is easier once you are stable, and more pedaling increases net angular momentum.
D) All of these.
سؤال
A spinning wheel has an angular momentum that points toward the east. If an eastward force is applied to the edge of the wheel,

A) the angular momentum of the wheel will change direction but not magnitude.
B) the angular momentum will get larger.
C) the angular momentum will get smaller.
D) the angular momentum of the wheel will not change.
سؤال
A merry-go-round is set into motion with a child on board. The rotational speed of the merry-go-round _____________ as the child moves inward along a radius.
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ملء الشاشة (f)
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Deck 8: Rotational Motion of Solid Objects
1
A flywheel is used to minimize changes in rotational velocity as the torque or the load changes. The rotational inertia of a flywheel should be chosen to be

A) anything-it doesn't matter.
B) as small as possible.
C) as large as possible.
as large as possible.
2
You stand with your heels against a wall and bend ninety degrees forward at the waist.

A) You fall forward because your center of gravity moves ahead of your base of support.
B) You fall forward because of the momentum you gain when you move.
C) You are able to maintain your balance.
D) You fall forward because the muscles in your feet aren't strong enough to stop you.
You fall forward because your center of gravity moves ahead of your base of support.
3
In a stable stack of identical boards at the edge of a table, the center of gravity of the top board

A) must lie above the table.
B) need not lie over anything.
C) must lie above the bottom board.
D) must lie above the next lower board.
must lie above the next lower board.
4
The bigger diameter gears on the rear wheel of a multi-speed bike allow the rider to

A) increase the moment of inertia of the wheel.
B) exert more force on the wheel.
C) exert more torque on the wheel.
D) decrease the moment of inertia of the wheel.
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5
A torque acting on a body tends to produce

A) equilibrium.
B) linear velocity.
C) a new center of gravity.
D) angular rotation.
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6
Using a longer-handled wrench to loosen a tight nut allows you to

A) exert more force on the nut.
B) apply more torque to the nut.
C) increase the moment of inertia of the nut.
D) pull harder on the wrench.
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7
A constant torque is applied to a flywheel. Which of the following mechanical quantities will be constant?

A) Rotational energy
B) Angular momentum
C) Rotational velocity
D) Rotational acceleration
E) Linear velocity of a particle on the rim
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8
When a bicycle pedal is at the top of its motion, you can exert the greatest torque on the crank by

A) pushing straight down on the pedal with your foot.
B) hooking your toes under the pedal and pulling upward.
C) pushing straight forward on the pedal with your foot.
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9
Three different bodies-a uniform sphere, a uniform disk, and a hoop-all have same radius and same mass. The body with the largest rotational inertia will be

A) the sphere.
B) the disk.
C) the hoop.
D) none, as all have the same value of rotational inertia.
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10
The rotational inertia of an object depends on

A) its color.
B) how fast it is spinning.
C) how its mass is distributed about the spin axis.
D) the amount of torque applied to it.
E) none of these.
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11
Because the rotational inertia is higher, it is hardest in springboard diving to perform a forward somersault in

A) the straight position (no bending at knees or waist).
B) the pike position (bending at the waist but not the knees).
C) the tuck position (bending at both the waist and knees).
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12
A figure skater is spinning with her arms extended. She now pulls her arms close to her body. What happens?

A) Her angular acceleration decreases.
B) Her rotational inertia decreases.
C) The net external torque on her increases.
D) Her lever arm gets shorter.
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13
A hoop and a sphere have the same diameter and the same mass. Which one will have a larger rotational inertia?

A) The hoop.
B) The sphere.
C) Both will require the same time to reach the bottom.
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14
A dancer begins performing a pirouette with arms extended. (A pirouette is a complete spin about a vertical axis.) This motion is completed most easily when the rotational inertia is decreased by

A) bending at the waist at a right angle.
B) extending the arms and one leg straight out to the sides.
C) holding the arms straight up and extending one foot straight out to the side.
D) bringing the arms and legs in a line with the body.
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15
An isolated object is initially spinning at a constant speed. Then, although no external forces act upon it, its rotational speed increases. This must be due to

A) an increase in the moment of inertia.
B) an increase in the mass.
C) an increase in the angular momentum.
D) a decrease in the moment of inertia.
E) impossible, angular momentum conservation is violated.
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16
Three horses are side-by-side on a merry-go-round: one at the edge, one near the axis, and one in between. Each horse has the same angular speed. Which horse has the greatest linear speed?

A) The horse at the edge.
B) The horse in the middle.
C) The horse nearest the axis.
D) The linear speed is the same for all three horses.
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17
An object is moving in a horizontal circle, in a clockwise direction (as viewed from above). In which direction does its angular momentum vector point?

A) To the viewer's left
B) Away from the viewer
C) Toward the viewer
D) From the ball toward the center of the circle
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18
A solid disk and a hollow disk with the same mass and diameter are released together (from rest) to roll down an incline. The solid disk reaches the bottom first. From this information we can say that the angular acceleration was

A) larger for the hollow disk.
B) larger for the solid disk.
C) the same for both disks.
D) impossible to know without a measurement of time.
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19
A football thrown with a spinning motion is more stable than one thrown without spin because

A) there is no net torque on a spinning object.
B) air flows more easily around spinning objects.
C) the torque generated by the spinning action is conserved.
D) the angular momentum of a spinning object can only be changed by applying a torque.
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20
The angular momentum of an isolated object can be changed only by

A) changing its rotational inertia.
B) applying a torque.
C) applying a force along the axis of rotation.
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21
Which of the following is an appropriate unit for describing rotational acceleration?

A) m/s2
B) rad/min
C) rev/min
D) rev/m/s
E) rev/min2
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22
A solid disk and a hoop have different diameters but identical masses. Which one has a larger rotational inertia?

A) The solid disk.
B) The hoop.
C) It is impossible to know without knowing the diameters.
D) It is impossible to know without knowing the torques acting on the two objects.
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23
The angular momentum of a rotating body is conserved when

A) no net torque acts on the body.
B) no net force acts on the body.
C) when the body has a constant angular acceleration.
D) the shape of the body does not change.
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24
A merry-go-round, having a radius of 2.5 m, is set in motion starting from rest, by students applying a force of 500 N tangential to the rim of the wheel. After five seconds of torque, the students let go and measure the rotational speed: 1.25 rad/s. The rotational inertia of the merry-go-round is

A) 7.5 ×\times 102 kg m2.
B) 1.7 ×\times 103 kg m2.
C) 2.5 ×\times 103 kg m2.
D) 5.0 ×\times 103 kg m2.
E) 1.0 ×\times 104 kg m2.
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25
A gyroscope consists of a wheel mounted on an axle aligned along a north-south direction. The south end of the axle is suspended by a rope attached to the ceiling, and the north end is manually held at rest. The wheel is spinning rapidly, so that its angular momentum vector points north. Suddenly the north end is released. Since there is spin, the north end of the axle will begin to move

A) north.
B) east.
C) down.
D) west.
E) south.
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26
If you push directly on the handle of a closed door and it does not swing open, then

A) its rotational inertia must be much larger than your torque.
B) the net torque on the door must be zero.
C) the lever arm must be very small.
D) the angular momentum of the door is larger than your force.
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27
A moving bicycle exhibits less stability when the angular momentum of the wheels is less, which means

A) its forward speed is also slower.
B) its forward speed is faster.
C) the inverse of the forward speed equals the torque.
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28
The armature (or spinning portion) of a motor is accelerated uniformly from rest to a rotational velocity of 1500 rev/min in 10 seconds. The rotational acceleration of the motor is

A) 150 rad/s2.
B) 15.7 rad/s2.
C) 31.4 rad/s2.
D) 75 rad/s2.
E) zero.
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29
If there is a net torque on a wheel, then

A) there must be a net force on the wheel.
B) the wheel must have a nonzero angular acceleration.
C) the wheel cannot be spinning.
D) the angular momentum of the wheel cannot change direction.
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30
In using a long steel rod as a lever to move a large rock, where should the fulcrum be placed for a person to use the least amount of force to move the rock?

A) Close to the person.
B) Exactly halfway between the person and the rock.
C) Anywhere in between; it makes no difference.
D) Close to the rock.
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31
Torque in the metric system is measured in units of

A) N.
B) N s.
C) N rad.
D) N/m.
E) N m.
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32
The figure above shows two yo-yos that have the same mass and rotational inertia. The one on the right has a thicker axle than the one on the left. The torque produced by gravity is

A) larger for the yo-yo on the right.
B) larger for the yo-yo on the left.
C) the same for both yo-yos.
D) zero; there is no net torque on the yo-yos.
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33
A top of rotational inertia 4.0 kg m2 receives a torque of 2.4 Nm from a physics professor. The angular acceleration of the body will be

A) 1.2 rev/s2.
B) 6.0 rad/s2.
C) 1.0 rad/s2.
D) 6.0 rev/s2.
E) 0.6 rad/s2.
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34
If the net force on a body is zero, the net torque on the body is

A) always zero.
B) not necessarily zero.
C) certainly not zero.
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35
When an ice skater twirling on the point of a skate draws her arms in she ends up whirling faster. This is because

A) rotational energy is conserved.
B) linear momentum is conserved.
C) angular momentum is conserved.
D) a net external torque acts on the skater.
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36
A student plays on a see-saw with her experimental android robot, Robby. The student has a weight of 300 N and is seated 2.8 m from the axis of rotation. Robby balances her when he is seated 0.7 m from the axis. Robby's weight is

A) 1000 N.
B) 500 N.
C) 667 N.
D) 725 N.
E) 1200 N.
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37
It is possible using the analogies between linear motion and rotational motion to write an expression for rotational kinetic energy. The formula for rotational kinetic energy (assuming τ \tau is torque, α\alpha is angular acceleration, I is rotational inertia, and ω \omega is angular velocity) is

A) ½ τ \tau α\alpha 2.
B) ½ I α\alpha 2.
C) ½ I ω \omega 2.
D) ½ τ \tau ω \omega 2.
 <strong>It is possible using the analogies between linear motion and rotational motion to write an expression for rotational kinetic energy. The formula for rotational kinetic energy (assuming   \tau   is torque,  \alpha  is angular acceleration, I is rotational inertia, and   \omega   is angular velocity) is</strong> A) ½   \tau    \alpha <sup>2</sup>. B) ½ I  \alpha <sup>2</sup>. C) ½ I   \omega  <sup>2</sup>. D) ½   \tau     \omega  <sup>2</sup>.
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38
A wheel is spinning on an axle. The linear velocity of a point on the rim is simply the product of the radius times the rotational velocity, as long as the rotational velocity is measured in units of

A) deg/s.
B) rev/min.
C) rad/s.
D) rev/s.
E) deg/min.
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39
The rotational velocity of a 45 rev/min phonograph record in rad/s is approximately

A) 45 rad/s.
B) 4.7 rad/s.
C) 0.75 rad/s.
D) 283 rad/s.
E) 15.7 rad/s.
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40
If the net torque on a body is zero, the net force on the body is

A) always zero.
B) not necessarily zero.
C) certainly not zero.
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41
If a solid disk and a hoop are to have the same mass and rotational inertia, then the hoop must have a _________ radius.
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42
The advantage that a lever can give you is that

A) with a small force, you can move a large weight.
B) with a small lever, you can move a large weight.
C) with a large force, you can torque a large weight.
D) with a small torque, you can lift a large weight.
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43
Holding out your hands sideways helps you keep your balance along a narrow set of stepping-stones because

A) the arms outward balance your weight.
B) arms inward only add to your weight.
C) with arms outward, you've increased your total rotational inertia relative to the pivot point: your feet.
D) moving the arms outward puts a counter-torque on the stepping-stones.
Fill in the Blank Questions
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44
The stability of a bicycle is due to angular momentum of the wheels when the bicycle is moving forward. The stability is due to the net angular momentum vector, which

A) points upward, perpendicular to the surface of Earth, thereby canceling the weight of the bicycle and rider.
B) points to the rider's left.
C) increases when the bicycle slows down due to conservation of energy.
D) is actually zero, since the back wheel cancels the angular momentum of the front wheel.
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45
Just as torque is the rotational analogue of force in linear motion, rotational inertia is the rotational analogue of _______ in linear motion.
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46
When a mechanic uses an extension arm on his wrench to loosen a stubborn nut, he is exerting additional torque because of an increase in the _________________ (two words) of the force.
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47
The angular momentum of a rotating body is constant when the net _______________ on the body is zero.
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48
When a planet moves closer to the Sun in an elliptical orbit, its rotational inertia

A) does not change because the mass of the planet is constant.
B) gets smaller because its distance from the Sun is smaller.
C) gets smaller because the lever arm is shorter.
D) gets larger because the angular momentum must be conserved.
E) gets larger because the planet has more angular acceleration.
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49
If an object has an angular acceleration larger than zero, its angular __________ must be changing with time.
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50
In principle, a first-grader could measurably move the Earth if

A) she pushed her hardest on the Earth.
B) she had a long enough lever.
C) she ran her fastest opposite the spin of the Earth.
D) she was at the North Pole and had a bicycle wheel spinning opposite the spin of Earth.
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51
If the net force on a body is zero the net torque _______________________ (is always, is not necessarily, cannot be) zero.
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52
Even a little first-grader can stay up on a bicycle if he can get his bicycle moving fast enough because

A) the angular momentum of the wheels wants to stay horizontal, due to conservation of angular momentum.
B) the first-grader's weight causes a torque too small to make the bicycle fall sideways when moving.
C) pedaling faster is easier once you are stable, and more pedaling increases net angular momentum.
D) All of these.
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53
A spinning wheel has an angular momentum that points toward the east. If an eastward force is applied to the edge of the wheel,

A) the angular momentum of the wheel will change direction but not magnitude.
B) the angular momentum will get larger.
C) the angular momentum will get smaller.
D) the angular momentum of the wheel will not change.
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54
A merry-go-round is set into motion with a child on board. The rotational speed of the merry-go-round _____________ as the child moves inward along a radius.
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