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A mass m slips along the wall of a semispherical surface of radius R. The velocity at the bottom of the surface is [ MP PMT 1993]

1. Rg

2. 2Rg

3. 2πRg

4. πRg

Subtopic:  Gravitational Potential Energy |
 81%
Level 1: 80%+
PMT - 1993
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Three different objects of mass m1, m2 and m3 are allowed to fall from rest and from the same point ‘O’ along three different frictionless paths. The speeds of the three objects, on reaching the ground, will be in the ratio of:

1. m1:m2:m3 2. m1:2m2:3m3
3. 1 : 1 : 1 4. 1m1:1m2:1m3 
Subtopic:  Work Energy Theorem |
 81%
Level 1: 80%+
AIIMS - 2002
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When a body moves with a constant speed along a circle 

1. No work is done on it

2. No acceleration is produced in the body

3. No force acts on the body

4. Its velocity remains constant

Subtopic:  Work Done by Variable Force |
 72%
Level 2: 60%+
PMT - 1994
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A sphere of mass m is tied to end of a string of length l and rotated through the other end along a horizontal circular path with speed v. The work done by centripetal force in full horizontal circle is 

1. 0

2. mv2l.2πl

3. mg . 2πl

4. mv2l.(l)

Subtopic:  Work Done by Variable Force |
 81%
Level 1: 80%+
PMT - 1993
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In a circus stuntman rides a motorbike in a circular track of radius R in the vertical plane. The minimum speed at highest point of track will be 

1. 2gR

2. 2gR

3. 3gR

4. gR

Subtopic:  Work Energy Theorem |
 72%
Level 2: 60%+
PMT - 1979
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A ball is suspended by a thread of length l. What minimum horizontal velocity has to be imparted to the ball for it to reach the height of the suspension:

1. gl

2. 2 gl

3. gl

4. 2gl

Subtopic:  Work Energy Theorem |
 75%
Level 2: 60%+
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A body of mass m hangs at one end of a string of length l, the other end of which is fixed. It is given a horizontal velocity so that the string would just reach where it makes an angle of 60° with the vertical. The tension in the string at mean position is 

1. 2 mg

2. mg

3. 3 mg

4. 3mg

Subtopic:  Work Energy Theorem |
 53%
Level 3: 35%-60%
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As per the given figure to complete the circular loop, what should be the radius of the loop?
 

 
1. 4 m
2. 3 m
3. 2.5 m
4. 2 m

Subtopic:  Work Energy Theorem |
 62%
Level 2: 60%+
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The kinetic energy k of a particle moving along a circle of radius R depends on the distance covered s as k = as2 where a is a constant. The force acting on the particle is 

(1) 2as2R

(2) 2as1+s2R21/2

(3) 2 as

(4) 2aR2s

Subtopic:  Concept of Work |
 52%
Level 3: 35%-60%
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A stone of mass 1 kg tied to a light inextensible string of length L=103m is whirling in a circular path of radius L in a vertical plane. If the ratio of the maximum tension in the string to the minimum tension in the string is 4 and if g is taken to be 10 m/sec2, the speed of the stone at the highest point of the circle is 

1. 20 m/sec

2. 103m/sec

3. 52m/sec

4. 10 m/sec

Subtopic:  Work Energy Theorem |
 60%
Level 2: 60%+
PMT - 1990
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