Home
Class 11
PHYSICS
A ball of mass in m= 1 kg is hung vertic...

A ball of mass in `m= 1 kg` is hung vertically by a thread of length `l = 1.50 m`. Upper end of the thread is attached to the ceiling of a trolley of mass `M= 4 kg`. Initially, the trolley is stationary and it is free to move along horizontal rails without friction. A shell of mass `m=1 kg`, moving horizontally with velocity `v_(0 )= 6 m//s` collides with the ball and gets stuck with it. As a result, the thread starts to deflect towards right.

At the time of maximum deflection of the thread with vertical, the trolley will move with velocity

Text Solution

Verified by Experts

The correct Answer is:
`37^(@)`

`COLM : mv_(0) = (M + 2m) v_(1)`
`v_(1) = (mv_(0))/(m) = (v_(0))/(6) = 1 m//s`
`COME : rArr (1)/(2) (2m) ((v_(0))/(2))^(2) = (1)/(2) Mv_(1)^(2) + 2m xx g xx h + (1)/(2)(2m)v_(1)^(2)`
`rArr h = 0.3 m = L (1 - cos theta)`
`cos theta = 1 - (3)/(15) = (4)/(5) rArr 0 = 37^(@)`
Promotional Banner

Topper's Solved these Questions

  • CENTRE OF MASS

    ALLEN |Exercise EXERCISE-V A|20 Videos
  • CENTRE OF MASS

    ALLEN |Exercise EXERCISE-V B|19 Videos
  • CENTRE OF MASS

    ALLEN |Exercise EXERCISE-IV A|32 Videos
  • BASIC MATHEMATICS USED IN PHYSICS &VECTORS

    ALLEN |Exercise EXERCISE-IV ASSERTION & REASON|11 Videos
  • ELASTICITY, SURFACE TENSION AND FLUID MECHANICS

    ALLEN |Exercise Exercise 5 B (Integer Type Questions)|3 Videos

Similar Questions

Explore conceptually related problems

A common of mass m_(1) = 12000 kg locatede on a smooth horizontal platform fires a shell of mass m _(2) = 300 kg in horizontal direction with a velocity v _(2)=400 ms//s. Find the velocity of the cannon after it is shot.

A ball of mass 2kg moving with speed 5m/s collides directly with another ball of mass 3kg moving in the same direction with speed 4m/s. The coefficient os restitution is 2/3. Find the velocities of both ball after the collision.

Three identical balls eah of mass m=0.5 kg are connected with each other as shwon in figure and rest over a smooth horizontal table At moment t=0, ball B is imparted a horizontal velocity v_(0)=9ms^(-1) calcualte velocity of A just before it collides with ball C.

A particle of mass m moving with velocity v is collide with a stationary particle of mass 2 m . The speed of the system , after collision will be ……….

A sphere of steel of mass 1 kg moving with a velocity of 12m/s ,along X-axis collides elastically with a stationary sphere after the collision is 8 m/s and is moving at an angle of 45^(@) with X -axis , find the magnitude and direction of the second sphere after the collision .

A mass of 3 kg is attached at end of rope with 6 kg mass. At upper end of rope tension will be …... .

A mass m moving horizontally (along the X-axis) with velocity v collides and sticks to a mass of 3 m moving vertically upward (along the Y - axis) with velocity 2v. The final velocity of the combination is ……….

A ball of mass 1 kg drops vertically on to the floor wit a speed of 25 m//s . It rebounds with an initial velocity of 10 m//s . What impulse acts on the ball during contact ?