Chapter-9

FORCE AND LAWS OF MOTION 



1.     An object experiences a net zero external unbalanced force.         Is it possible for the object to be travelling with a non-zero velocity? If yes, state the conditions that must be placed on            the magnitude and direction of the velocity. If no, provide a reason.

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2.     When a carpet is beaten with a stick, dust comes out of it. Explain.

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3.     Why is it advised to tie any luggage kept on the roof of a bus with a rope?

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4.     A batsman hits a cricket ball which then rolls on a level ground. After covering a short distance, the ball comes to rest. The ball slows to a stop because

        (a) the batsman did not hit the ball hard enough.

        (b) velocity is proportional to the force exerted on the ball.

        (c) there is a force on the ball opposing the motion.

        (d) there is no unbalanced force on the ball, so the ball would want to come to rest.

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5.     A truck starts from rest and rolls down a hill with a constant acceleration. It travels a distance of 400 m in 20 s. Find its acceleration. Find the force acting on it if its mass is 7                    tonnes (Hint: 1 tonne = 1000 kg.)

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6.     A stone of 1 kg is thrown with a velocity of 20 m S-1 across            the frozen surface of a lake and comes to rest after                        travelling a distance of 50 m. What is the force of friction            between the stone and the ice?

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7.     A 8000 kg engine pulls a train of 5 wagons, each of 2000 kg,         along a horizontal track. If the engine exerts a force of                40000 N and the track offers a friction force of 5000 N, then         calculate:

        (a) the net accelerating force;

        (b) the acceleration of the train; and 

        (c) the force of wagon 1 on wagon 2.

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8.     An automobile vehicle has a mass of 1500 kg. What must be         the force between the vehicle and road if the vehicle is to be         stopped with a negative acceleration of 1.7 m S-2?

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9.     What is the momentum of an object of mass m, moving with         a velocity v?

        (a) (mv)² 

        (b) mv²

        (c) ½ mv²

        (d) mv

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10.     Using a horizontal force of 200 N, we intend to move a                  wooden cabinet across a floor at a constant velocity. What           is the friction force that will be exerted on the cabinet?

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11.     Two objects, each of mass 1.5 kg, are moving in the same              straight line but in opposite directions . The velocity of                  each object is 2.5 m s before the collision during which they           stick together. What will be the velocity of the combined             object after collision?

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12.     According to the third law of motion when we push on an             object, the object pushes back on us with an equal and                 opposite force. If the object is a massive truck parked along          the roadside, it will probably not move. A student justifies             this by answering that the two opposite and equal forces             cancel each other. Comment on this logic and explain why             the truck does not move.

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13.    A hockey ball of mass 200 g travelling at 10 m S-1 is struck             by a hockey stick so as to return it along its original path             with a velocity at 5 m s¹. Calculate the change of                             momentum occurred in the motion of the hockey ball by the         force applied by the hockey stick.

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14.     bullet of mass 10 g travelling horizontally with a velocity of           150 m S-1 strikes a stationary wooden block and comes to             rest in 0.03 s. Calculate the distance of penetration of the             bullet into the block. Also calculate the magnitude of the             force exerted by the wooden block on the bullet.

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15.     An object of mass 1 kg travelling in a straight line with a             velocity of 10 m S-1 collides with, and sticks to, a stationary             wooden block of mass 5 kg. Then they both move off                     together in the same straight line. Calculate the total                     momentum just before the impact and just after the impact.         Also, calculate the velocity of the combined object.

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16.     An object of mass 100 kg is accelerated uniformly from a             velocity of 5 m S-1 to 8 m s¹ in 6 s. Calculate the initial and             final momentum of the object. Also, find the magnitude of             the force exerted on the object.

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17.     Akhtar, Kiran and Rahul were riding in a motorcar that              was moving with a high velocity on an expressway when an           insect hit the windshield and got stuck on the windscreen.             Akhtar and Kiran started pondering over the situation.                 Kiran suggested that the insect suffered a greater change in         momentum as compared to the change in momentum of the         motorcar (because the change in the velocity of the insect            was much more than that of the motorcar). Akhtar said that         since the motorcar was moving with a larger velocity, it exerted a larger force on the insect. And as a result the                insect died. Rahul while putting an entirely new explanation said that both the motorcar and the insect experienced the same force and a change in their momentum. Comment on these suggestions.

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18.     How much momentum will a dumb-bell of mass 10 kg transfer to the floor if it falls from a height of 80 cm? Take its downward acceleration to be 10 m s-².

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Type- Bikash Bora 

 

Post ID: DABP001720