Home
Class 11
PHYSICS
A wooden cylinder of diameter 4 r, heigh...

A wooden cylinder of diameter 4 r, height H and density `rho//3` is kept on a hole of diameter 2 r of a tank, filled with water of density `rho` as shown in the

If height `h_(2)` of water level is further decreased, then

A

cylinder will not move up and remains at its original position.

B

for `h_(2) = H//3`, cylinder again starts moving up

C

for `h_(2) = H//4`, cylinder again starts moving up

D

for `h_(2) = H//5` cylinder again starts moving up

Text Solution

Verified by Experts

The correct Answer is:
A

For `h_(2) lt 4h//9` cylinder does not move up because further bouyant force decreases while the weight of block remains same.
Promotional Banner

Topper's Solved these Questions

  • FLUID MECHANICS

    RESONANCE|Exercise Exercise- 3 PART - II|5 Videos
  • FLUID MECHANICS

    RESONANCE|Exercise Advanced Level Problems|8 Videos
  • FLUID MECHANICS

    RESONANCE|Exercise Exercise- 2 PART - IV|10 Videos
  • ELECTROSTATICS

    RESONANCE|Exercise Exercise|52 Videos
  • FULL TEST 1

    RESONANCE|Exercise Exercise|30 Videos

Similar Questions

Explore conceptually related problems

A wooden cylinder of diameter 4 r, height H and density rho//3 is kept on a hole of diameter 2 r of a tank, filled with water of density rho as shown in the If level of liquid starts decreasing slowly, when the level of liquid is at a height h_(1) above the cylinder, the block just start moving up. Then the value of h_(1) is

A wooden cylinder of diameter 4 r, height H and density rho//3 is kept on a hole of diameter 2 r of a tank, filled with water of density rho as shown in the The block in the above question is maintained by external means and the level of liquid is lowered. The height h_(2) when this external force reduces to zero is

A cylindrical tank has a hole of diameter 2r in its bottom. The hole is covered wooden cylindrical block of diameter 4r, height h and density rho//3 . Situation I: Initially, the tank is filled with water of density rho to a height such that the height of water above the top of the block is h_1 (measured from the top of the block). Situation II: The water is removed from the tank to a height h_2 (measured from the bottom of the block), as shown in the figure. The height h_2 is smaller than h (height of the block) and thus the block is exposed to the atmosphere. In situation 2, if h_2 is further decreased, then

A cylindrical tank has a hole of diameter 2r in its bottom. The hole is covered wooden cylindrical block of diameter 4r, height h and density rho//3 . Situation I: Initially, the tank is filled with water of density rho to a height such that the height of water above the top of the block is h_1 (measured from the top of the block). Situation II: The water is removed from the tank to a height h_2 (measured from the bottom of the block), as shown in the figure. The height h_2 is smaller than h (height of the block) and thus the block is exposed to the atmosphere. Find the minimum value of height h_1 (in situation 1), for which the block just starts to move up?

A cylindrical tank has a hole of diameter 2r in its bottom. The hole is covered wooden cylindrical block of diameter 4r, height h and density rho//3 . Situation I: Initially, the tank is filled with water of density rho to a height such that the height of water above the top of the block is h_1 (measured from the top of the block). Situation II: The water is removed from the tank to a height h_2 (measured from the bottom of the block), as shown in the figure. The height h_2 is smaller than h (height of the block) and thus the block is exposed to the atmosphere. Find the height of the water level h_2 (in situation 2), for which the block remains in its origin) position whithout the application of any external force

A beaker is filled with a liquid of density rho upto a height h If the beaker is at rest, the mean pressure at the walls is:

RESONANCE-FLUID MECHANICS-Exercise- 3 PART - I
  1. Water is filled in a container upto height 3m. A small hole of area 'a...

    Text Solution

    |

  2. A U tube is rotated about one of it's limbs with an angular velocity o...

    Text Solution

    |

  3. A wooden cylinder of diameter 4 r, height H and density rho//3 is kept...

    Text Solution

    |

  4. A wooden cylinder of diameter 4 r, height H and density rho//3 is kept...

    Text Solution

    |

  5. A wooden cylinder of diameter 4 r, height H and density rho//3 is kept...

    Text Solution

    |

  6. A fixed thermally conducting cylinder has a radius R and height L0. Th...

    Text Solution

    |

  7. A fixed thermally conducting cylinder has a radius R and height L0. Th...

    Text Solution

    |

  8. A fixed thermally conducting cylinder has a radius R and height L0. Th...

    Text Solution

    |

  9. STATEMENT-1: The stream of water flowing at high speed from a garden h...

    Text Solution

    |

  10. A small spherical monoatomic ideal gas bubble (gamma=5//3) is trapped ...

    Text Solution

    |

  11. A small spherical monoatomic ideal gas bubble (gamma=5//3) is trapped ...

    Text Solution

    |

  12. A small spherical monoatomic ideal gas bubble (gamma=5//3) is trapped ...

    Text Solution

    |

  13. A cylindrical vessel of height 500mm has an orifice (small hole) at it...

    Text Solution

    |

  14. Two solid spheres A and B of equal volumes but of different densities ...

    Text Solution

    |

  15. A solid sphere of radius R and density rho is attached to one end of a...

    Text Solution

    |

  16. A spray gun is shown in the figure where a piston pushes air out of a ...

    Text Solution

    |

  17. A spray gun is shown in the figure where a piston pushes air out of a ...

    Text Solution

    |