Home
Class 11
PHYSICS
Cionsider the situation of the previous ...

Cionsider the situation of the previous problem. Suppose each of tbe blocks is pulled by a constant foerce F instead of any impulse. Find the maximum elongation that the spring will suffer and the distancews moved by the two blocks in the process.

Text Solution

Verified by Experts

The correct Answer is:
A, B

If both blocks are pulled by some force they suddenly move with some acceleration and instntaneously stop at same positioin where the elongation of sprin is maximum.
`rarr x_1,x_2rarr` extansion by block `m-1 and m_2`
Total work doen `=Fx_1+Fx_2`......i
`:.` Inccreases the potential energy of spring
`=1(1/2)K(x_1+x_2)^2`..........2
Equating 1 and 2
`F(x_1+x_2)(1/2)K(x_1+x_2_)^2`
`F(x_1+x_2)=(1/2)K(x_+x_2)^2` ltbr. `rarr (x_1+x_2)=((2F)/k)`
Since the net exterN/Al force on the two blocks is zero ths same force acts on oppostie directions
`:. m_1x_1=m_2x_2` .......3
and `x_1+x_2=(2F)/k`
`:. x_2=m_1/m_2 x_1`
`Substituing m_1/m_2x_1+x_1=(2F)/k`
`rarr x_1(1+m_1/m_2)=(2F)/k`
`x_1=(2Fm_2)/(k(m_1+m_2))`
`x_2=(2Fm_1)/(k(m_1+m_2)`
Promotional Banner

Topper's Solved these Questions

  • CENTRE OF MASS, LINEAR MOMENTUM, COLLISION

    HC VERMA|Exercise Objective -2|11 Videos
  • CALORIMETRY

    HC VERMA|Exercise Exercises|18 Videos
  • CIRCULAR MOTION

    HC VERMA|Exercise Exercises|30 Videos

Similar Questions

Explore conceptually related problems

The spring shown in figure is unstretched when a man starts pulling on the cord. The mass of the block is M . If the man exerts a constant force F , find (a) the amplitude and the time period of the motion of the block, (b) the energy stored in the spring when the block passes through the equilibrium position and (c) the kinetic energy of the block at this position.

Two block of equal mass m are connected by an unstretched spring and the sytem is kept at rest on a frictionless horizontal surface. A constant force F is applied on one of the blocks puling it away from the other as shown in figure. a.Find the positon of the centre of mass at time t. b.If the extansion of the spring is x_0 at time t find the displacement of the two blocks at this instant.

Consider the situation of the previous problem. (a) Calculate the force needed to keep the sliding wire moving with a constant velocity v. (b) If the force needed just after t = 0 is F_0 , find the time at which the force needed will be F_0 /2.

Consider the situation shown in figure. Suppose a small electric field E exists in the space in the vertically upward direction and the upper block carries a positive charge Q on its top surface. The friction coefficient between the two blocks is mu but teh floor is smooth. what maximum horizontal force F can be applied without disturbing the equilibrium?

Suppose the block of the previous problem is pushed down the incine witas force of 4N. How far will the block move in the first two seconds after starting from rest? The mass of the block is 4 kg.

Two blocks of equal mass m are tied to each other through light string. One of the blocks is pulled along the line joining them with a constant force F. Find the tension in the string joining the blocks.

The springs shown in the figure are all unstretched in the beginning when a man starts pulling the block. The man exerts a constant force F on the blcok. Find the amplitude and the frequency of the motion of the block.

A block of mass 2 kg placed on a long frictionless horizontal table is pulled horizontally by a constant foerce F. It is found to move 10 m in the first two seconds. Find the magnitude of F.

Two blocks of masses m_1 and m_2 are connected by a spring of spring constant k figure. The block of mass m_2 is given a shape impulse so that it acquires a velocity v_0 towards right. Find a. the velocity of the centre of mass b. the maximum elongation that the spring will suffer.

A block of mass m is connect to another block of mass M by a massless spring of spring constant k. The blocks are kept on a smooth horizontal plane. Initially the blocks are at rest and the spring is unsrtretched when a constnt force F starts acting on the block of mass M to pull it. Find the maximum extension of the spring.

HC VERMA-CENTRE OF MASS, LINEAR MOMENTUM, COLLISION-Exercises
  1. The coefficient of restitution (e ) for a material is as follows

    Text Solution

    |

  2. An ideal spring of spring constant k, is suspended from the ceiling of...

    Text Solution

    |

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

    Text Solution

    |

  4. A bullet of mass 10g moving horizontally with a velocity of 400 ms^-1s...

    Text Solution

    |

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

    Text Solution

    |

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

    Text Solution

    |

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

    Text Solution

    |

  8. Consider the situation of the previous problem. The force on the centr...

    Text Solution

    |

  9. A ball of mass 1 kg moving with a speed of 10 ms^(-1) rebounds after ...

    Text Solution

    |

  10. The track shown in figure is frictionless. The block B of mass 2 m is ...

    Text Solution

    |

  11. A bullet of mass 10g moving horizontally at a speed of 50 7 ​ m/s s...

    Text Solution

    |

  12. Two balls having masses m and 2m are fasrtened to two light strings of...

    Text Solution

    |

  13. A uniform chain of mass M and length L is held verticallyi in such a w...

    Text Solution

    |

  14. The blocks shown in figure have equal masses. The surface of A is smoo...

    Text Solution

    |

  15. The friction coefficient between the horizontal surfce and ech of the ...

    Text Solution

    |

  16. A block of mas m is placed on a triangular block of mas m, which in tu...

    Text Solution

    |

  17. Figure shows a small body of mass m placed over a larger mass M whose ...

    Text Solution

    |

  18. A small block of superdennse material has a mass of 3xx10^24 kg. It i...

    Text Solution

    |

  19. A body of mass m makes an elastic collision with another identical bod...

    Text Solution

    |

  20. A small particle travelling with a velocity v collides elastically wit...

    Text Solution

    |