Rotational Motion

Q. If the moment of inertia of a body is 10 kg m², what is the angular momentum when it rotates with an angular velocity of 5 rad/s?
  • A. 50 kg m²/s
  • B. 10 kg m²/s
  • C. 5 kg m²/s
  • D. 2 kg m²/s
Q. If the moment of inertia of a body is 10 kg m², what is the rotational kinetic energy when it rotates with an angular velocity of 5 rad/s?
  • A. 125 J
  • B. 50 J
  • C. 100 J
  • D. 75 J
Q. If the moment of inertia of a body is 10 kg·m² and it is subjected to a torque of 20 N·m, what is the angular acceleration?
  • A. 2 rad/s²
  • B. 0.5 rad/s²
  • C. 5 rad/s²
  • D. 10 rad/s²
Q. If the moment of inertia of a body is doubled, what happens to its rotational kinetic energy if the angular velocity remains constant?
  • A. Doubles
  • B. Halves
  • C. Remains the same
  • D. Quadruples
Q. If the moment of inertia of a body is doubled, what will be the effect on its angular acceleration if the torque applied remains constant?
  • A. Doubles
  • B. Halves
  • C. Remains the same
  • D. Increases by a factor of four
Q. If the moment of inertia of a body is doubled, what will happen to its angular momentum if the angular velocity remains constant?
  • A. Doubles
  • B. Halves
  • C. Remains the same
  • D. Quadruples
Q. If the moment of inertia of a body is increased, what happens to its angular acceleration for a constant torque?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
Q. If the radius of a disc is doubled while keeping its mass constant, how does its moment of inertia change?
  • A. It remains the same
  • B. It doubles
  • C. It quadruples
  • D. It halves
Q. If the radius of a disk is doubled while keeping its mass constant, how does its moment of inertia change?
  • A. Increases by a factor of 2
  • B. Increases by a factor of 4
  • C. Remains the same
  • D. Decreases by a factor of 4
Q. If the radius of a rotating disc is doubled while keeping the mass constant, how does the angular momentum change if the angular velocity remains the same?
  • A. It doubles
  • B. It remains the same
  • C. It quadruples
  • D. It halves
Q. If the radius of a rotating object is halved while keeping the angular velocity constant, what happens to the linear velocity at the edge?
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It becomes zero
Q. If the radius of a rotating object is halved while keeping the mass constant, how does its moment of inertia change?
  • A. It remains the same
  • B. It doubles
  • C. It halves
  • D. It reduces to one-fourth
Q. If the radius of a rotating wheel is halved while keeping the angular velocity constant, what happens to the linear velocity of a point on the edge of the wheel?
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It becomes zero
Q. If the radius of a solid disk is doubled while keeping its mass constant, how does its moment of inertia change?
  • A. Increases by a factor of 2
  • B. Increases by a factor of 4
  • C. Remains the same
  • D. Decreases by a factor of 2
Q. If the torque is doubled while keeping the distance constant, what happens to the force applied?
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It quadruples
Q. If the torque on a rotating object is doubled while the radius remains constant, what happens to the force applied?
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It quadruples
Q. If the torque on an object is zero, what can be said about the forces acting on it?
  • A. The object is at rest.
  • B. The net force is zero.
  • C. The forces are balanced.
  • D. The forces are acting along the same line.
Q. If the torque on an object is zero, which of the following must be true?
  • A. The net force is zero.
  • B. The object is at rest.
  • C. The forces are balanced.
  • D. The line of action of the forces passes through the pivot.
Q. If two equal and opposite forces are applied at the ends of a lever arm of length 1 m, what is the net torque about the center?
  • A. 0 Nm
  • B. 1 Nm
  • C. 2 Nm
  • D. 4 Nm
Q. If two equal and opposite forces are applied at the ends of a lever arm of length 4 m, what is the net torque about the center?
  • A. 0 Nm
  • B. 8 Nm
  • C. 4 Nm
  • D. 16 Nm
Q. If two equal and opposite forces are applied at the ends of a lever arm, what is the net torque about the center?
  • A. Zero
  • B. Equal to the force
  • C. Depends on the distance
  • D. Twice the force
Q. If two forces of 5 N and 10 N are applied at the same distance from a pivot, which force produces more torque?
  • A. 5 N
  • B. 10 N
  • C. Both produce the same torque
  • D. It depends on the angle of application
Q. If two forces of equal magnitude are applied at different distances from a pivot, which will produce a greater torque?
  • A. The force applied further away
  • B. The force applied closer
  • C. Both produce equal torque
  • D. It depends on the angle
Q. If two forces of equal magnitude are applied at opposite ends of a lever arm, what is the net torque about the center?
  • A. Zero
  • B. Equal to the force
  • C. Twice the force
  • D. Depends on the distance
Q. If two identical disks are stacked on top of each other, what is the moment of inertia about the axis of the bottom disk?
  • A. MR^2
  • B. 2MR^2
  • C. 1/2 MR^2
  • D. 4MR^2
Q. If two rigid bodies have the same mass and shape but one is rotating faster than the other, how does their moment of inertia compare?
  • A. The same
  • B. The faster one has a larger moment of inertia
  • C. The slower one has a larger moment of inertia
  • D. Cannot be determined
Q. In a rotating system, if the angular momentum is doubled while the moment of inertia remains constant, what happens to the angular velocity?
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It quadruples
Q. In a seesaw, if one child exerts a force of 30 N at a distance of 1.5 m from the pivot, what is the torque produced by this child?
  • A. 15 Nm
  • B. 30 Nm
  • C. 45 Nm
  • D. 60 Nm
Q. In a seesaw, if one child exerts a force of 30 N at a distance of 2 m from the pivot, what is the torque exerted by that child?
  • A. 15 Nm
  • B. 30 Nm
  • C. 60 Nm
  • D. 0 Nm
Q. In a seesaw, if one child exerts a torque of 30 N·m on one side, what torque must the other child exert to balance it?
  • A. 15 N·m
  • B. 30 N·m
  • C. 45 N·m
  • D. 60 N·m
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