Home
Class 11
PHYSICS
A simple pendulum consists of a bob of m...


A simple pendulum consists of a bob of mass m and a light string of length l as shown in the fig. another identical ball moving with the small velocity `v_0` collides with the pendulum's bob and sticks to it. For this new pendulum of mass 2 m, mark out the correct statements (s).

A

Time period of the pendulum is `2pisqrt((l)/(g))`.

B

The equation of motion for this pendulum is `theta=(v_0)/(2sqrt(gl))sin[sqrt((g)/(l))t]`

C

The equation of motion for this pendulum is `theta=(v_0)/(2sqrt(gl))cos[sqrt((g)/(l))t]`.

D

Time period of the pendulum is `2pisqrt((2l)/(g))`.

Text Solution

Verified by Experts

The correct Answer is:
A, B


The time period of simple harmonic pedulum is independent of mass, so it would be same as that `T=2pisqrt((1)/(g))`. After collision, the combined mass acquires a velocity of `(v_0)/(2)`, as a result of this velocity, the mass (2m) moves up and at an angel `theta_0` (say) with vertical , it stops, this is the extreme position of bob. From work`-`energy theorem, `triangleK=W_(tat ol)`
`0-(2m)/(2)((v_0)/(2))^2=-2mgl(1-costheta_0)`
`(v_0^2)/(8gl)=1-costheta=2sin^2((theta_0)/(2))`
`sin((theta_0)/(2))=(v_0)/(4sqrt(gl))`
If `theta_0` is small `sin((theta_0)/(2))cong((theta_0)/(2))impliestheta_0=(v_0)/(2sqrt(gl))`
So, the equation of simple harmonic motion is `theta=theta_0sin(omegat)`
Promotional Banner

Topper's Solved these Questions

  • LINEAR AND ANGULAR SIMPLE HARMONIC MOTION

    CENGAGE PHYSICS|Exercise Assertion Reasoning|6 Videos
  • LINEAR AND ANGULAR SIMPLE HARMONIC MOTION

    CENGAGE PHYSICS|Exercise Comprehension|33 Videos
  • LINEAR AND ANGULAR SIMPLE HARMONIC MOTION

    CENGAGE PHYSICS|Exercise Single Correct|107 Videos
  • KINETIC THEORY OF GASES AND FIRST LAW OF THERMODYNAMICS

    CENGAGE PHYSICS|Exercise Interger|11 Videos
  • MISCELLANEOUS KINEMATICS

    CENGAGE PHYSICS|Exercise Interger type|3 Videos

Similar Questions

Explore conceptually related problems

A simple pendulum with a bob of mass m is suspended from the roof of a car moving with a horizontal acceleration a.

A simple pendulum with a bob of mass m is suspended from the roof of a car moving with horizontal acceleration a

A simple pendulum consists of a ball of mass m connected to a string of length L . The ball is pulled aside so that the string makes an angle of 53^(@) with the verticle and is released. Find the ratio of the minumum and the tension in the string.

A particle of mass m moving with velocity V_(0) strikes a simple pendulum of mass m and sticks to it. The maximum height attained by the pendulum will be

A simple pendulum with a bob of mass m is suspended from the roof of a car moving with a horizontal accelertion a. The angle made by the string with verical is

A pendulum consists of a bob of mass m=0.1 kg and a massless inextensible string of length l=1.0m . It is suspended from a fixed point at height h=0.9m above a frictionless horizontal floor. Initially, the bob of the pendulum is lying on the floor at rest vertically below the point of suspension. A horizontal impulse P=02.kg-m//s is imparted to the bob lifts off the floor. The magnitude of the angular momentum of the pendulum about the point of suspension just before the bob lifts off is J kg- m^2//s . The kinetic energy of the pendulum just after the lift-off js K Joules. The value of J is ___

A pendulum consists of a bob of mass m=0.1 kg and a massless inextensible string of length l=1.0m . It is suspended from a fixed point at height h=0.9m above a frictionless horizontal floor. Initially, the bob of the pendulum is lying on the floor at rest vertically below the point of suspension. A horizontal impulse P=02.kg-m//s is imparted to the bob lifts off the floor. The magnitude of the angular momentum of the pendulum about the point of suspension just before the bob lifts off is J kg- m^2//s . The kinetic energy of the pendulum just after the lift-off js K Joules. The value of K is ___

A simple pendulum length l with a bob of mass m is taken into Earth orbit on the International space station. What is its frequency of oscillation with respect to that on the ground?

A simple pendulum bob has a mass ''m'' and length ''L'' . The bob is drawn aside such that the string is horizontal and then it is released. The velocity of the bob while it crosses the equilibrium position is

CENGAGE PHYSICS-LINEAR AND ANGULAR SIMPLE HARMONIC MOTION-Multiple Correct
  1. For the spring pendulum shown in fig. the value of spring constant is ...

    Text Solution

    |

  2. An object of mass m is performing simple harmonic motion on a smooth h...

    Text Solution

    |

  3. A simple pendulum consists of a bob of mass m and a light string of le...

    Text Solution

    |

  4. A particle performing simple harmonic motion undergoes unitial displac...

    Text Solution

    |

  5. A particle is subjected to two simple harmonic motions along x and y d...

    Text Solution

    |

  6. The speed v of a particle moving along a straight line, when it is at ...

    Text Solution

    |

  7. A horizontal plank has a rectangular block placed on it. The plank sta...

    Text Solution

    |

  8. A 20g particle is subjected to two simple harmonic motions x1=2sin10t,...

    Text Solution

    |

  9. A spring block system undergoes SHM on a smooth horizontal surface, th...

    Text Solution

    |

  10. The potential energt of a particle of mass 0.1 kg, moving along the x-...

    Text Solution

    |

  11. The time period of a particle in simple harmonic motion is T. Assume p...

    Text Solution

    |

  12. Figure. (a) shows a spring of force constant k fixed at one end and ca...

    Text Solution

    |

  13. When the point of suspendion of pendulum is moved, its period of oscil...

    Text Solution

    |

  14. The displacement time relation for a particle can be expressed as y=0....

    Text Solution

    |

  15. At two particular closest instant of time t1 and t2 the displacements ...

    Text Solution

    |

  16. Two blocks connected by a spring rest on a smooth horizontal plane as ...

    Text Solution

    |

  17. A block of mass m is suspended by a rubber cord of natural length l=(m...

    Text Solution

    |

  18. The displacement (x) of a particle as a function of time (t) is given ...

    Text Solution

    |

  19. A simple pendulum is oscillating between extreme position P and Q abou...

    Text Solution

    |

  20. A cylinderical block of density d stays fully immersed in a beaker fil...

    Text Solution

    |