Laws of Motion

Q. A block is sliding down a frictionless incline of angle θ. If the incline has a coefficient of static friction μs, what is the maximum angle θ for which the block will not slide?
  • A. tan⁻¹(μs)
  • B. sin⁻¹(μs)
  • C. cos⁻¹(μs)
  • D. μs
Q. A block is sliding down a frictionless incline. If the incline is now covered with a material that has a coefficient of kinetic friction of 0.3, how does this affect the acceleration of the block?
  • A. Increases acceleration
  • B. Decreases acceleration
  • C. No effect on acceleration
  • D. Acceleration becomes zero
Q. A block of mass 10 kg is resting on a horizontal surface. If the coefficient of kinetic friction is 0.3, what is the frictional force acting on the block when it is sliding?
  • A. 30 N
  • B. 20 N
  • C. 10 N
  • D. 15 N
Q. A block of mass 10 kg is resting on a horizontal surface. If the coefficient of static friction is 0.5, what is the maximum static frictional force acting on the block?
  • A. 25 N
  • B. 50 N
  • C. 75 N
  • D. 100 N
Q. A block of mass 5 kg is placed on a frictionless surface. A force of 10 N is applied to it. What is the acceleration of the block?
  • A. 1 m/s²
  • B. 2 m/s²
  • C. 3 m/s²
  • D. 4 m/s²
Q. A block of mass 5 kg is placed on a frictionless surface. A force of 20 N is applied to it. What is the acceleration of the block?
  • A. 2 m/s²
  • B. 4 m/s²
  • C. 5 m/s²
  • D. 10 m/s²
Q. A block of mass 5 kg is placed on a frictionless surface. If a force of 10 N is applied to it, what will be its acceleration?
  • A. 1 m/s²
  • B. 2 m/s²
  • C. 3 m/s²
  • D. 4 m/s²
Q. A block of mass 5 kg is resting on a horizontal surface. If a horizontal force of 20 N is applied, what is the acceleration of the block? (Assume no friction)
  • A. 2 m/s²
  • B. 4 m/s²
  • C. 5 m/s²
  • D. 10 m/s²
Q. A block of mass 5 kg is resting on a horizontal surface. If the coefficient of kinetic friction between the block and the surface is 0.3, what is the frictional force acting on the block when it is sliding?
  • A. 5 N
  • B. 10 N
  • C. 15 N
  • D. 20 N
Q. A block of mass 5 kg is resting on a horizontal surface. If the coefficient of static friction is 0.4, what is the maximum static frictional force acting on the block?
  • A. 10 N
  • B. 20 N
  • C. 15 N
  • D. 25 N
Q. A block slides down a frictionless incline of angle 30 degrees. If the incline has a coefficient of kinetic friction of 0.2, what is the acceleration of the block?
  • A. 4.9 m/s²
  • B. 3.9 m/s²
  • C. 2.9 m/s²
  • D. 1.9 m/s²
Q. A body is moving in a circular path of radius 4 m with a constant speed of 8 m/s. What is the net force acting on the body if its mass is 2 kg?
  • A. 4 N
  • B. 8 N
  • C. 16 N
  • D. 32 N
Q. A body is moving in a circular path with a radius of 10 m and completes one revolution in 5 seconds. What is its linear speed?
  • A. 2π m/s
  • B. 4π m/s
  • C. 10 m/s
  • D. 20 m/s
Q. A box is pushed across a floor with a force of 50 N. If the coefficient of kinetic friction is 0.4, what is the net force acting on the box if the normal force is 100 N?
  • A. 10 N
  • B. 20 N
  • C. 30 N
  • D. 40 N
Q. A box is pushed with a force of 50 N on a surface with a coefficient of kinetic friction of 0.3. If the normal force is 100 N, what is the net force acting on the box?
  • A. 20 N
  • B. 30 N
  • C. 50 N
  • D. 70 N
Q. A box is pushed with a force of 50 N on a surface with a coefficient of kinetic friction of 0.4. What is the acceleration of the box if its mass is 10 kg?
  • A. 1 m/s²
  • B. 2 m/s²
  • C. 3 m/s²
  • D. 4 m/s²
Q. A car accelerates from rest at a rate of 2 m/s². What is the net force acting on the car if its mass is 1000 kg?
  • A. 200 N
  • B. 500 N
  • C. 1000 N
  • D. 2000 N
Q. A car accelerates from rest to a speed of 20 m/s in 10 seconds. What is the distance covered by the car during this time?
  • A. 50 m
  • B. 100 m
  • C. 200 m
  • D. 400 m
Q. A car accelerates from rest to a speed of 30 m/s in 10 seconds. What is the distance covered by the car during this time?
  • A. 150 m
  • B. 300 m
  • C. 400 m
  • D. 600 m
Q. A car is moving in a circular path of radius 50 m with a constant speed of 20 m/s. What is the centripetal acceleration of the car?
  • A. 2 m/s²
  • B. 4 m/s²
  • C. 8 m/s²
  • D. 10 m/s²
Q. A car is moving in a circular path of radius 50 m with a speed of 15 m/s. What is the angular displacement after 10 seconds?
  • A. 1 rad
  • B. 2 rad
  • C. 3 rad
  • D. 4 rad
Q. A car is moving in a circular track of radius 100 m at a speed of 20 m/s. What is the time period of one complete revolution?
  • A. 10 s
  • B. 20 s
  • C. 30 s
  • D. 40 s
Q. A car is moving in a circular track of radius 100 m with a speed of 20 m/s. What is the time period of one complete revolution?
  • A. 10 s
  • B. 20 s
  • C. 30 s
  • D. 40 s
Q. A car is moving in a circular track of radius 50 m with a speed of 15 m/s. What is the net force acting on the car if its mass is 1000 kg?
  • A. 200 N
  • B. 300 N
  • C. 400 N
  • D. 500 N
Q. A car is moving in a circular track of radius 50 m with a speed of 15 m/s. What is the angular momentum of the car if its mass is 1000 kg? (2000)
  • A. 7500 kg m²/s
  • B. 10000 kg m²/s
  • C. 15000 kg m²/s
  • D. 20000 kg m²/s
Q. A car is moving on a circular track of radius 100 m. If the maximum speed at which it can move without skidding is 20 m/s, what is the coefficient of friction between the tires and the road?
  • A. 0.1
  • B. 0.2
  • C. 0.3
  • D. 0.4
Q. A car is negotiating a curve of radius 100 m at a speed of 15 m/s. What is the minimum coefficient of friction required to prevent the car from skidding?
  • A. 0.15
  • B. 0.25
  • C. 0.30
  • D. 0.35
Q. A car of mass 1000 kg accelerates at 2 m/s². What is the net force acting on the car?
  • A. 2000 N
  • B. 500 N
  • C. 1000 N
  • D. 1500 N
Q. A car of mass 1000 kg accelerates from rest to a speed of 20 m/s in 10 seconds. What is the net force acting on the car? (2000)
  • A. 100 N
  • B. 200 N
  • C. 300 N
  • D. 400 N
Q. A car of mass 1000 kg is moving at a speed of 15 m/s. What is the kinetic energy of the car?
  • A. 11250 J
  • B. 22500 J
  • C. 33750 J
  • D. 45000 J
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