1. | \(0\%\) | 2. | \(25\%\) |
3. | \(50\%\) | 4. | \(100\%\) |
If a body starts its motion along the smooth track from P as shown in the figure, then its velocity at the instant of leaving R is
(1) 5 m/s
(2) 15 m/s
(3) 10 m/s
(4) 20 m/s
The principle of conservation of energy and conservation of mechanical energy applicable respectively for
(1) Conservative and non-conservative forces
(2) Conservative and conservative force
(3) Non-conservative and conservative forces
(4) All forces and conservative forces
A particle of mass m is moving in a vertical circle of radius r. If the velocity of the particle at the uppermost point is , then its velocity at the lowermost point
(1)
(2)
(3)
(4) 2
A person applies a force \(\vec F\) on a box inside a moving train. If \(S_1\) is the displacement of box with respect to train and
1. \(\vec F \cdot \vec{S_1}\)
2. \(\vec F \cdot \vec{S_2}\)
3. \(\vec F \cdot (\vec{S_1}+ \vec{S_2})\)
4. \(\vec F \cdot (\vec{S_1}- \vec{S_2})\)
A block having mass m is hanging by a string of length l. A variable horizontal force is applied on the block, which displaces the block slowly till the string makes an angle with the vertical. Find the work done by the force.
(1) mgl
(2) mgl(1 - cos)
(3) mglcos
(4) mgl(1 + cos)
A particle is moving with kinetic energy E and momentum p. Which of the following graphs is possible between and ?
1.
2.
3.
4.
Two vehicles are moving with the same kinetic energy. If the ratio of their masses is 1 : 3 then find the ratio of their stopping distances when both vehicles stop with the same retardation.
(1) 1: 1
(2) 3: 1
(3) 9: 1
(4) 1: 9
If the work done by the string on block A is W. Then work done by the string on the block B will be
(1) -W
(2)
(3) 2W
(4) Zero
If the pulley system with the ideal mechanical advantage of 4 requires a force of 15 N to lift a load of 45 N, then the efficiency of the pulley is
(1) 25%
(2) 30%
(3) 40%
(4) 75%