Home
Class 11
PHYSICS
A block of mass 2.0 kg moving at 2.0 m/s...

A block of mass 2.0 kg moving at 2.0 m/s collides head on with another block of equal mass kept at rest. a. Find the maximum possible loss in kinetic energy due to the collision. b.If the actual loss in kinetic energy is half of this maximum, find the coefficient of restitution.

Text Solution

Verified by Experts

. Mass of block =2kg
and speed =2m/s
Mass of 2nd block =2kg
Let fiN/Al velocity of 2nd block =v
Using law of consevation of momentum
`2xx2=(2+2)-v`
`rarr v=1m/s`
`:.` Loss in K.E. in elastic collision
`=(1/2)xx2xx2^2-(1/2)(2+2)xx(1)^2`
`=4-2=2J`
`b. Actual loss=(Maximum loss)/2=1J`
`(1/2)xxw2xx(2)^2-(1/2)2xxv_1^2-(1/2)xx2v_2^2=1`
`rarr 4(v_1^2+v_2^2)=1`
`rarr 3-((1+e^I2)xx4)/2=1`
`rarr 2(1+e^2)=3`
`rarr 1+e^2=3/2`
`e^2=1/2`
`e=1/sqrt2`
Promotional Banner

Topper's Solved these Questions

  • CENTRE OF MASS, LINEAR MOMENTUM, COLLISION

    HC VERMA ENGLISH|Exercise Question For short Answer|25 Videos
  • CENTRE OF MASS, LINEAR MOMENTUM, COLLISION

    HC VERMA ENGLISH|Exercise Objective -2|11 Videos
  • CENTRE OF MASS, LINEAR MOMENTUM, COLLISION

    HC VERMA ENGLISH|Exercise Objective -1|18 Videos
  • CALORIMETRY

    HC VERMA ENGLISH|Exercise Short answer|9 Videos
  • CIRCULAR MOTION

    HC VERMA ENGLISH|Exercise Question for short Answer|10 Videos

Similar Questions

Explore conceptually related problems

A block of mass 1.2 kg moving at a speed of 20 cm /s collides head on with a similar block kept at rest. The coefficient of restitution is 3/5. Find the loss of kinetic energy during the collision.

A ball of mass 5 kg moving with speed 8 m/s collides head on with another stationary ball of mass 15 kg. If collision is perfectly inelastic, then loss in kinetic energ is

A block of mass m moving at a velocity upsilon collides head on with another block of mass 2m at rest. If the coefficient of restitution is 1/2, find the velocities of the blocks after the collision.

A particle of mass m moving with speed u collides perfectly inelastically with another particle of mass 2m at rest. Find loss of kinetic energy of system in the collision.

A particle of mass m moving with speed u collides perfectly inelastically with another particle of mass 2m at rest. Find loss of kinetic energy of system in the collision.

A body of mass 4 kg moving with velocity 12 m//s collides with another body of mass 6 kg at rest. If two bodies stick together after collision , then the loss of kinetic energy of system is

A body of mass 4 kg moving with velocity 12 m//s collides with another body of mass 6 kg at rest. If two bodies stick together after collision , then the loss of kinetic energy of system is

A 60 kg man skating with a speed of 10 m/s collides with a 40 kg skater at rest and they cling to each other. Find the loss of kinetic energy during the collision.

A block of mass m moving at speed upsilon collides with another block of mass 2 m at rest. The lighter block comes to rest after the collision. Find the coefficient of restitution.

A block of mass 1 kg moving with a speed of 4 ms^(-1) , collides with another block of mass 2 kg which is at rest. The lighter block comes to rest after collision. The loss in KE of the system is

HC VERMA ENGLISH-CENTRE OF MASS, LINEAR MOMENTUM, COLLISION-Exercises
  1. A bullet of mass m moving at a speed v hits a ball of mass M kept at r...

    Text Solution

    |

  2. A ball of mass m moving at a speed v makes a head-on collision with an...

    Text Solution

    |

  3. A block of mass 2.0 kg moving at 2.0 m/s collides head on with another...

    Text Solution

    |

  4. A particle of mass 100 g moving at an initial speed u collides with an...

    Text Solution

    |

  5. Two friends A and B (each weighing 40 kg) are sitting on a frictionles...

    Text Solution

    |

  6. A ball falls on the ground fro a height of 2.0 m and rebounds up to a ...

    Text Solution

    |

  7. In a gamma decay process, the internal energy of a nucleus of mass M d...

    Text Solution

    |

  8. A block of mass 2.0 kg is moving on a frictionless horizontal surface ...

    Text Solution

    |

  9. A bullet of mass 20 g travelling horizontally with a speed of 500 m/s ...

    Text Solution

    |

  10. A projectile is fired with a speed u at an angle theta above a horizon...

    Text Solution

    |

  11. A ball falls vertically on an inclined plane of inclination alpha with...

    Text Solution

    |

  12. Solve tehh previous problem if the coefficient of restitution is e. Us...

    Text Solution

    |

  13. A block of mass 180 g is suspended by a massless spring. The spring ex...

    Text Solution

    |

  14. A bullet of mass 25 g is fired horizontally into a ballistic pendulum ...

    Text Solution

    |

  15. A bullet of mass 20 g moving horizontally at a speed of 300 m/s is fir...

    Text Solution

    |

  16. Two masses m1 and m2 re connected by a spring of spring constant k and...

    Text Solution

    |

  17. Two blocks of masses m1 and m2 are connected by a spring of spring con...

    Text Solution

    |

  18. Cionsider the situation of the previous problem. Suppose each of tbe b...

    Text Solution

    |

  19. consider the situastion of the previous problem. Suppose the block of ...

    Text Solution

    |

  20. Consider a gravity-free hall in which an experimenter of mass 50 kg is...

    Text Solution

    |