Home
Class 12
PHYSICS
In a spring gun having spring constant 1...

In a spring gun having spring constant 100 N/m a small ball 'B' of mass 100 g is put in its barrel (as shown in figure) by compressing the spring through 0.05 m. There should be a box placed at a distance 'd' on the ground so that the ball falls in it. If the ball leaves the gun horizontally at a height of 2 m above the ground. The value of d is ____ m. `(g = 10" m/s"^(2))`

Promotional Banner

Topper's Solved these Questions

  • JEE MAINS 2021

    JEE MAINS PREVIOUS YEAR|Exercise PHYSICS (SECTION - A) |40 Videos
  • JEE MAINS 2021

    JEE MAINS PREVIOUS YEAR|Exercise PHYSICS (SECTION - B) |20 Videos
  • JEE MAINS 2021

    JEE MAINS PREVIOUS YEAR|Exercise Physics (Section B )|10 Videos
  • JEE MAINS 2020

    JEE MAINS PREVIOUS YEAR|Exercise PHYSICS|246 Videos
  • JEE MAINS 2022

    JEE MAINS PREVIOUS YEAR|Exercise PHYSICS (SECTION -B)|10 Videos

Similar Questions

Explore conceptually related problems

In a spring gum having spring constant 100 N//m a small ball of mass 0.1 kg is put in its barrel by compressing the spring through 0.05 m (a) Find the velocity of the ball when the spring is released. (b) Where should a box be placed on the ground so that the ball falls in it, if the ball leaves the gun horizontally at a height of 2m above the ground. Take g=10 m//s^(2)

A small block of mass 100 g is pressed again a horizontal spring fixed at one end to compress the sprign through 5.0 cm. The spring constant is 100 N/m. When released, the block moves hroizontally till it leaves the spring. Where will it hit the ground 2 m below the spring?

A spring is compressed by 10 cm by a ball of mass 20 g . What will be the potential energy of a spring if the force constant of the spring is 20 N cm^(-1) .

A spring gun has a spring constant of 80Ncm^(-1) . The spring is compressed 12cm by a ball of mass 15g . How much is the potential energy of the spring ? If the trigger is pulled, what will be the velocity of ball ?

A massless spring of length l and spring constant k is placed vertically on a table. A ball of mass m is just kept on top of the spring. The maximum velocity of the ball is

The time period of an oscillating spring of mass 630 g and spring constant 100 N/m with a load of 1 kg is

A 700 g block is released from rest at height h_(0) above a vertical spring with spring constant k=450N//m and negligible mass. The block sticks to the spring and momentarily stops after compressing the spring 19.0 cm. How much work is done (a) by the block on the spring and (b) by the spring on the block ? (c) What is the value of h_(0) ? (d) If the block were released from height 2.00h_(0) above the spring, what would be the maximum compression of the spring ?

A bullet of mass m is fired from a gun of mass M. The recoiling gun compresses a spring of force constant k by a distance d. Then the velocity of the bullet is

A spring of force constant k = 100 N/m is compressed to x = 0.05 m by a block of mass 1 kg and released.Find the distance d where it falls

Knowledge Check

  • A spring gun of spring constant 90 N cm^(-1) is compressed 12 cm by a ball of mass 16 g. If the trigger is pulled, the velocity of the ball is

    A
    `50 m s^(-1)`
    B
    `40 ms^(-1)`
    C
    `60 m s^(-1)`
    D
    `90 ms^(-1)`
  • A massless spring of length l and spring constant k is placed vertically on a table. A ball of mass m is just kept on top of the spring. The maximum velocity of the ball is

    A
    `gsqrt((m)/(k))`
    B
    `gsqrt((2m)/(k))`
    C
    `g/2sqrt((m)/(k))`
    D
    `gsqrt((m)/(2k))`
  • The time period of an oscillating spring of mass 630 g and spring constant 100 N/m with a load of 1 kg is

    A
    `0.2pi s`
    B
    `0.21pi s`
    C
    `0.22pi s`
    D
    `0.02pi s`
  • JEE MAINS PREVIOUS YEAR-JEE MAINS 2021-PHYSICS (SECTION-B)
    1. In a spring gun having spring constant 100 N/m a small ball 'B' of mas...

      Text Solution

      |

    2. In an LCR series circuit, an inductor 30 mH and a resistor 1 Omega are...

      Text Solution

      |

    3. The amplitude of wave disturbance propagating in the positive x-direc...

      Text Solution

      |

    4. A body having specific charge 8 mu C//g is resting on a frictionless p...

      Text Solution

      |

    5. In the reported figure, heat energy absorbed by a system in going thro...

      Text Solution

      |

    6. A circular disc reaches from top to bottom of an inclined plane of len...

      Text Solution

      |

    7. A rod of mass M and length L is lying on a horizontal frictionless sur...

      Text Solution

      |

    8. An object viewed from a near point distance of 25 cm, using a microsc...

      Text Solution

      |

    9. The frequency of a car horn encountered a change from 400 Hz to 500 Hz...

      Text Solution

      |

    10. A carrier wave V(c)(t)=160 sin (2 pi xx 10^(6) t) volts is made to var...

      Text Solution

      |

    11. In a given circuit diagram, a 5 V zener diode along with a series resi...

      Text Solution

      |

    12. The position of the centre of mass of a uniform semi-circular wire of ...

      Text Solution

      |

    13. In an electric circuit, a call of certain emf provides a potential dif...

      Text Solution

      |

    14. The total charge enclosed in an incremental volume of 2 xx 10^(-9) m^3...

      Text Solution

      |

    15. Three particce P,Q and R are moving along the vectors vecA = hati + ha...

      Text Solution

      |

    16. The centre of a wheel rolling on a plane surface moves with a speed v0...

      Text Solution

      |

    17. A ray of light passing through a prism (mu = sqrt3)suffers minimum dev...

      Text Solution

      |

    18. The area of cross-section of a railway track is 0.01 m^2 . The temper...

      Text Solution

      |

    19. Three students S1, S2 and S3 perform an experiment for determining th...

      Text Solution

      |

    20. In 5 minutes, a body cools from 75^@C to 65^@C at room temperature o...

      Text Solution

      |