Home
Class 11
PHYSICS
In the figure shown all the surfaces are...

In the figure shown all the surfaces are frictionless and mass of block `m=1kg`, block and wedge are held initially at rest, now wedge is given a horizontal acceleration of `10 m//s^(2)` by applying a force on the wedge so that the block does not slip on the wedge, the work done by normal force in ground frame on the block in `sqrt(3) sec` is
.

A

30 J

B

60 J

C

150 J

D

`100 sqrt(3) J`

Text Solution

Verified by Experts

The correct Answer is:
C
Promotional Banner

Topper's Solved these Questions

  • WORK POWER AND ENERGY

    NARAYNA|Exercise Level-VI (Multiple Answer)|11 Videos
  • WORK POWER AND ENERGY

    NARAYNA|Exercise Level-VI (Comprehension)|20 Videos
  • WORK POWER AND ENERGY

    NARAYNA|Exercise Level-V (Integer)|5 Videos
  • WORK , ENERGY & POWER

    NARAYNA|Exercise EXERCISE IV|43 Videos

Similar Questions

Explore conceptually related problems

In the figure shown all the surfaces are frictionless, and mass of the block 'm' is 1 kg. The block and wedge are held initially at rest. Now wedge is given a horizontal acceleration of 5 m/s^(2) by applying a force on the wedge, so that the block does not slip on the wedge. Then work done by the normal force in ground frame on the block in 2 sec is : (##NAR_NEET_PHY_XI_P2_C06_E09_012_Q01.png" width="80%">

In figuer, shown all the surfaces are frictionless, and mass of the block is m=100g . The block and the wedge are held initially at rest. Now the wedge is given a horizontal acceleration of 10ms^-2 by applying a force on the wedge, so that the block does not slip on the wedge. Then find the work done in joules by the normal force in ground frame on the block in 1s .

Figure-2.162 shows a wedge of mass 2kg resting on a fritionless floor. A block of mass 1 kg is kept on the wedge and the wedge is given an acceleration of 5 m//s^(2) towards right. Then :

A block of mass 1.0 kg rests on a wedge of angle theta . The acceleration which should be given to the wedge so that the block falls freely is :

As shown in the figure a block of mass 'm' is placed on a smooth wedge moving with constant acceleration such that block does not move with respect to the wedge. Find work done by the net force on the block in time t. (Initial speed is 0)

Block of mass m is stationary w.r.t. wedge. Normal force exerted by wedge on the block is

A block of mass m is kept on an inclined plane of mass 2m and inclination alpha to horizontal. If the whole system is accelerated such that the block does not slip on the wedge then :

A small block of mass 1 kg is kept on a rough inclined wedge of inclination 45^@ fixed in an elevator. The elevator goes up with a uniform velocity v=2 m//s and the block done not slide on the wedge. Find the work done by the of friction on the block in 1s . (g=10 m//s^(2))

A block of mass m is placed on a smooth wedge of wedge angle theta The whole system is accelerated horizontally so that the block does not slip on the wedge. The force (normal reaction) exerted by the wedge on the block has a magnitude:

A block of mass m is at rest on a rought wedge as shown in figure. What is the force exerted by the wedge on the block?

NARAYNA-WORK POWER AND ENERGY-Level-VI (Single Answer)
  1. Three springs A,B and C each of force constant K, are connected at O. ...

    Text Solution

    |

  2. A rope of length l and mass 'm' is connected to a chain of length l an...

    Text Solution

    |

  3. In the figure shown all the surfaces are frictionless and mass of bloc...

    Text Solution

    |

  4. A ring of mass m can slide over a smooth vertical rod as shown in fig...

    Text Solution

    |

  5. A small body A starts sliding from the height h down an inclined groov...

    Text Solution

    |

  6. In the figure (a) and (b) AC and GF are fixed inclined planes BC = EF ...

    Text Solution

    |

  7. A 0.5kg block slides from the point A on a horizontal track with an in...

    Text Solution

    |

  8. A block of mass 1 kg kept over a smooth surface is given velocity 2 m/...

    Text Solution

    |

  9. A body is displaced from (0,0) to (1 m, 1m) along the path x = y by a ...

    Text Solution

    |

  10. Forces acting on a particle moving in a straight line varies with the ...

    Text Solution

    |

  11. A particle of mass m initially at rest starts moving from point A on t...

    Text Solution

    |

  12. A bob attached to one end of a string, other end of which is fixed at ...

    Text Solution

    |

  13. A wind - powered generator convets and energy into electrical energy ...

    Text Solution

    |

  14. An ideal spring with spring - constant K is bung from the colling and...

    Text Solution

    |

  15. If W(1) W(2) and W(3) represent the work done in moving a particle fro...

    Text Solution

    |

  16. A particle is acted by x force F = Kx where K is a( + Ve) constant its...

    Text Solution

    |

  17. A bob of mass M is suspended by a massless string of length L. The hor...

    Text Solution

    |

  18. The work done an a particle of mass m by a force K[(x)/((x^(2) + y^(...

    Text Solution

    |

  19. A tennis ball dropped on a barizoontal smooth surface , it because bac...

    Text Solution

    |

  20. A wire, which passes through the hole in a small bead, is bent in the ...

    Text Solution

    |