Questions in Laws of Motion

SelectQuestion
A rocket is ejecting $50g$ of gases per sec at a speed of $500\,m/s.$ The accelerating force on the rocket will be
A block of mass $5\,kg$ is moving horizontally at a speed of 1.5 m/s. A perpendicular force of 5N acts on it for 4 sec. What will be the distance of the block from the point where the force started acting
A lift of mass 1000 kg is moving with an acceleration of 1 $m/{s^2}$ in upward direction. Tension developed in the string, which is connected to the lift, is
A lift accelerated downward with acceleration 'a'. A man in the lift throws a ball upward with acceleration ${a_0}({a_0} < a).$ Then acceleration of ball observed by observer, which is on earth, is
A lift is moving down with acceleration a. A man in the lift drops a ball inside the lift. The acceleration of the ball as observed by the man in the lift and a man standing stationary on the ground are respectively
A man weighs $80kg.$ He stands on a weighing scale in a lift which is moving upwards with a uniform acceleration of $5m/{s^2}.$ What would be the reading on the scale. $(g = 10m/{s^2})$
A monkey of mass 20kg is holding a vertical rope. The rope will not break when a mass of 25 kg is suspended from it but will break if the mass exceeds 25 kg. What is the maximum acceleration with which the monkey can climb up along the rope $(g = 10m/{s^2})$
If in a stationary lift, a man is standing with a bucket full of water, having a hole at its bottom. The rate of flow of water through this hole is ${R_0}.$ If the lift starts to move up and down with same acceleration and then that rates of flow of water are ${R_u}$ and ${R_d},$ then
A rocket with a lift- off mass $3.5 \times {10^4}$$kg$ is blasted upwards with an initial acceleration of $10m/{s^2}.$ Then the initial thrust of the blast is
A spring balance is attached to the ceiling of a lift. A man hangs his bag on the spring and the spring reads 49 N, when the lift is stationary. If the lift moves downward with an acceleration of $5\,m/{s^2},$ the reading of the spring balance will be

View Selected Questions (0)

Back to Categories

Back to Home