If \(100\) N force is applied to \(10\) kg block as shown in diagram, then the acceleration produced for the slab will be:

   

1. \(1. 65 \) m/s2
2. \(0.98 \) m/s2
3. \(1. 2 \) m/s2
4. \(0.25\) m/s2

Subtopic:  Friction |
 58%
From NCERT
AIPMT - 1999
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A man is slipping on a frictionless inclined plane & a bag falls down from the same height. Then the speed of both is related as:

1. VB > Vm

2. VB < Vm

3. VB = Vm

4. VB and Vm can't be related

Subtopic:  Friction |
 72%
From NCERT
AIPMT - 2000
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On the horizontal surface of a truck, a block of mass 1 kg is placed (µ = 0.6) and the truck is moving with an acceleration of 5 m/s2. The frictional force on the block will be:
1.  5 N
2.  6 N
3.  5.88 N
4.  8 N

Subtopic:  Friction |
 62%
From NCERT
AIPMT - 2001
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A block of mass 10 kg is placed on a rough horizontal surface with a coefficient of friction µ = 0.5. If a horizontal force of 100 N acts on the block, then the acceleration of the block will be: 

1. 10 m/s2

2. 5 m/s2

3. 15 m/s2

4. 0.5 m/s2

Subtopic:  Friction |
 89%
From NCERT
AIPMT - 2002
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The coefficient of static friction, \(\mu_s,\) between block A of mass \(2\) kg and the table as shown in the figure is \(0.2\). What would be the maximum mass value of block B so that the two blocks do not move? The string and the pulley are assumed to be smooth and massless. (Take \(g=10\) m/s2

      

1. \(4.0\) kg
2. \(0.2\) kg
3. \(0.4\) kg
4. \(2.0\) kg

Subtopic:  Friction |
 81%
From NCERT
AIPMT - 2004
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