A block is placed on a rough horizontal plane. A time dependent horizontal force F=kt acts on the block. The acceleration time graph of the block is :
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A motorcycle is going on an overbridge of radius R. The driver maintains a constant speed. As the motorcycle is ascending on the overbridge, the normal force on it:
1. Increases
2. decreases
3. remains the same
4. fluctuates erratically
A rod of length L and mass m is acted on by two unequal forces F1 and F2(<F1) as shown in the following figure
The tension in the rod at a distance y from the end A is given by :
1. F1(1-yL)+F2(yL)
2. F2(1-yL)+F1(yL)
3. (F1-F2)yL
4. None of the above
Two blocks A and B of masses m & 2m respectively are held at rest such that the spring is in natural length. Find the accelerations of both the blocks just after release.
1. g↓,g↓
2. g3↓,g3↑
3. (0, 0)
4. g↓,0
Two blocks 'A' and 'B' each of mass 'm' are placed on a smooth horizontal surface. Two horizontal force F and 2F are applied on both the blocks 'A' and 'B' respectively as shown in figure. The block A does not slide on block B. Then the normal reaction acting between the two blocks is:
1. F
2. F/2
3. F√3
4. 3F
Five persons A, B, C, D & E are pulling a cart of mass 100 kg on a smooth surface and the cart is moving with acceleration 3 m/s2 in east direction. When person 'A' stops pulling, it moves with acceleration 1 m/s2 in the west direction. When person 'B' stops pulling, it moves with acceleration 24 m/s2 in the north direction. The magnitude of the acceleration of the cart when only A & B pull the cart keeping their directions same as the old directions are:
1. 26 m/s2
2. 3√71 m/s2
3. 25 m/s2
4. 30 m/s2
A body moves along an uneven surface with constant speed at all points. The normal reaction due to ground on the body is:
1. | maximum at A |
2. | maximum at B |
3. | minimum at C |
4. | the same at A,B and C |
Two masses, m and M, are connected by a light string passing over a smooth pulley. When mass m moves up by 1.4 m in 2 sec, the ratio mM is:
1. | 1315 | 2. | 1513 |
3. | 97 | 4. | 79 |
A car is moving in a circular horizontal track of radius 10 m with a constant speed of 10 m/sec. A plumb bob is suspended from the roof of the car by a light rigid rod of length 1.00 m. The angle made by the rod with the track is
1. Zero
2. 30°
3. 45°
4. 60°
The engine of a car produces an acceleration of 4 m/s2 in the car. If this car pulls another car of the same mass, what will be the acceleration produced?
1. 8 m/s2
2. 2 m/s2
3. 4 m/s2
4. 12m/s2