Home
Class 11
PHYSICS
Two blocks of masses in and 4m lie on a ...

Two blocks of masses in and `4m` lie on a smooth horizontal surface connected with a spring in its natural length. Mass `m` is given velocity `v_(0)` through an impulse as shown in Fig. Which of the following is not true about subsequent motion?

A

Kinetic energy is maximum in ground frame and centre of mass (CM) frame simultaneously

B

Value of maximum and minimum kinetic energy is same in CM and ground frame

C

Minimum kinetic energy is zero in CM frame but non-zero in ground frame.

D

Maximum and minimum kinetic energy of m in ground frame is, respectively`1/2mv_(0)^(2)` and zero.

Text Solution

Verified by Experts

The correct Answer is:
B

In both `CM` and ground frame 1`K_(max)` is there when `x` is zero in spring, which occurs simultaneously.
`v_(CM)=(m(v_(0)+0))/(5m)=(v_(0))/5`
`K_(max) CM=1/2m((4v_(0))/5)^(2)+1/2(4m)((v_(0))/5)^(2)=2/5mv+(0)^(2)`
`K_(max) "ground "=1/2mv_(0)^(2)`
`K_(min CM)=0`
`K_(min) "ground"=1/2(m+4m)v_(CM)^(2)=(mv_(0)^(2))/10`
`K_(max m)=1/2 mv_(0)^(2)` (ground frame)
`K_(min) m=0` (ground frame when energy is shared by sping adn `4m` only and `m` will reverse direction of motion)
Promotional Banner

Topper's Solved these Questions

  • CENTRE OF MASS

    CENGAGE PHYSICS ENGLISH|Exercise Multiple Correct|25 Videos
  • CENTRE OF MASS

    CENGAGE PHYSICS ENGLISH|Exercise Assertion - Reasoning|2 Videos
  • CENTRE OF MASS

    CENGAGE PHYSICS ENGLISH|Exercise Subjective|23 Videos
  • CALORIMETRY

    CENGAGE PHYSICS ENGLISH|Exercise Solved Example|13 Videos
  • DIMENSIONS & MEASUREMENT

    CENGAGE PHYSICS ENGLISH|Exercise Integer|2 Videos

Similar Questions

Explore conceptually related problems

A block of mass m lie on a horizontal smooth surface and connected with the springs at their natural length as shown in figure. When block slightly displaced then find the time period of oscillation.

Two masses m_1 and m_2 are placed on a smooth horizontal surface and are connected by a string of negligible mass. A horizontal force F is applied on the mass m_2 as shown in the figure. The tension in the string is

Mass m is connected with an ideal spring of natural length l whose other end is fixed on a smooth horizontal table. Initially spring is in its natural length l . Mass m is given a velocity 'v' perpendicular to the spring and released . The velocity perpendicular to the spring when its length l+x , will be

A rod AB of mass M and length 8l lies on a smooth horizontal surface. A particle, of mass m and velocity v_(0) strike's the rod perpendicular to its length, as shown in Fig. As a result of the collision, the centre of mass of the rod attains a speed of v_(0)//8 and the particle rebounds back with a speed of v_(0)//4 . Find the following: a. The ratio M//m . b. The angular velocity of the rod about O . c. The coefficient of restitution 'e' for the collision. d. The velocities of the ends 'A' and 'B' of the rod, namely, v_(A) and v_(B) respectively.

A dumbbell consists of two balls A and B of mass m=1 kg and connected by a spring. The whole system is placed on a smooth horizontal surface as shown in the figure. Initially the spring is at its natural length, the ball B is imparted a velocity v_(0)=8/(sqrt(7))m//s in the direction shown. The spring constant of the spring is adjusted so that the length of the spring at maximum elongation is twice that of the natural, length of the spring. Find the maximum potential energy stored (in Joule) in the spring during the motion.

A block of mass m, lying on a smooth horizontal surface, is attached to a spring (of negligible mass) of spring constant k. The other end of the spring is fixed, as shown in the figure. The block is initally at rest in its equilibrium position. If now the block is pulled withe a constant force F, the maximum speed of the block is :

A block of mass m moving with velocity v_(0) on a smooth horizontal surface hits the spring of constant k as shown. The maximum compression in spring is

Two blocks connected by a spring rest on a smooth horizontal plane as shown in Fig. A constant force F start acting on block m_2 as shown in the figure. Which of the following statements are not correct?

Two ring of mass m and 2m are connected with a light spring and can slide over two frictionless parallel horizontal rails as shown in figure. Ring of mass m is given velocity 'v_(0)' in horizontal direction as shown. Calculate the maximum stretch in spring during subsequent motion.

Two blocks A and B of masses in and 2m , respectively, are connected with the help of a spring having spring constant, k as shown in Fig. Initially, both the blocks arc moving with same velocity v on a smooth horizontal plane with the spring in its natural length. During their course of motion, block B makes an inelastic collision with block C of mass m which is initially at rest. The coefficient of restitution for the collision is 1//2 . The maximum compression in the spring is

CENGAGE PHYSICS ENGLISH-CENTRE OF MASS-Single Correct
  1. A trolley was moving horizontally on a smooth ground with velocity v w...

    Text Solution

    |

  2. In a figure shown mass of A and B is equal to M each. Friction between...

    Text Solution

    |

  3. Two blocks of masses in and 4m lie on a smooth horizontal surface conn...

    Text Solution

    |

  4. A vessel at rest explodes breaking it into three pieces. Two pieces ha...

    Text Solution

    |

  5. A stationary body of mass 3 kg explodes into three equal pieces. Two o...

    Text Solution

    |

  6. A ball of mass in collides horizontally with a stationary wedge on a r...

    Text Solution

    |

  7. A body is hanging from a rigid support. by an inextensible string of l...

    Text Solution

    |

  8. A ball is let fall from a height h(0). There are n collisions with the...

    Text Solution

    |

  9. A body X with a momentum p collides with another identical stationary ...

    Text Solution

    |

  10. A pendulum consists of a wooden bob of mass m and length l. A bullet o...

    Text Solution

    |

  11. Two pendulums each of length l are initially situated as shown in Fig....

    Text Solution

    |

  12. A wooden block of mass 10 g is dropped from the top of a tower 100 m h...

    Text Solution

    |

  13. A machinist starts with three identical square plates but cuts one cor...

    Text Solution

    |

  14. A particle of mass 2m is projected at an angle of 45^(@) with horizont...

    Text Solution

    |

  15. A sphere is moving with velocity vector 2hati+2hatj immediately before...

    Text Solution

    |

  16. Two equal spheres A and B lie on a smooth horizontal circular groove a...

    Text Solution

    |

  17. A block 'A' of mass m1 hits horizontally the rear side of a spring (id...

    Text Solution

    |

  18. A particle of mass 4m is projected from the ground at some angle with ...

    Text Solution

    |

  19. A block of mass M is tied to one end of a massless rope. The other end...

    Text Solution

    |

  20. A particle of mass m1 moving with velocity v in a positive direction c...

    Text Solution

    |