Home
Class 11
PHYSICS
Passage XI) The differential equation of...

Passage XI) The differential equation of a particle undergoing SHM is given by `a(d^(2)x)/(dt^(2))`+bx = 0. The particle starts from the extreme position.
The time period of osciallation is given by

A

`(2pi)/(b)`

B

`(2pi)sqrt(b)`

C

`(2pi)sqrt(b/a)`

D

`(2pi(sqrt(a/b))`

Text Solution

Verified by Experts

The correct Answer is:
D
Promotional Banner

Topper's Solved these Questions

  • SIMPLE HARMONIC MOTION

    DC PANDEY|Exercise Comprehension types|18 Videos
  • SIMPLE HARMONIC MOTION

    DC PANDEY|Exercise Matrix matching type questions|13 Videos
  • SIMPLE HARMONIC MOTION

    DC PANDEY|Exercise JEE Advanced|34 Videos
  • SEMICONDUCTORS AND ELECTRONIC DEVICES

    DC PANDEY|Exercise More than One Option is Correct|3 Videos
  • SOLVD PAPERS 2017 NEET, AIIMS & JIPMER

    DC PANDEY|Exercise Solved paper 2018(JIPMER)|38 Videos

Similar Questions

Explore conceptually related problems

Passage XI) The differential equation of a particle undergoing SHM is given by a(d^(2)x)/(dt^(2)) +bx = 0. The particle starts from the extreme position. The ratio of the maximum acceleration to the maximum velocity of the particle is

The differential equation of a particle undergoing SHM is given by a a(d^(2)"x")/(dt^(2))+b"x"=0 ltbr.gt The particle starts from the extreme position The equation of motion may be given by :

The differential equation of a particle undergoing SHM is given by a a(d^(2)"x")/(dt^(2))+b"x"=0 . The particle starts from the extreme position. The ratio of the maximum acceleration to the maximum velocity of the particle is –

The differential equation of a particle performing a S.H.M. is (d^(2)x)/(dt^(2))+ 64x=0 . The period of oscillation of the particle is

The equation of SHM of a particle is given as 2(d^(2)x)/(dt^(2))+32x=0 where x is the displacement from the mean position. The period of its oscillation ( in seconds) is -

If the particle in linear S.H.M. starts from the extreme left position, then its equation of motion is given by

Differential equation for a particle performing linear SHM is given by (d^(2)x)/(dt^(2))+3xx=0 , where x is the displacement of the particle. The frequency of oscillatory motion is

The differnetial equation of S.H.M is given by (d^2x)/(dt^2)+propx=0 . The frequency of motion is

The equation of motion of a particle executing SHM is ((d^2 x)/(dt^2))+kx=0 . The time period of the particle will be :

The ins"tan""tan"cous acceleration (a) of a particle executing a linear SHM is given by a = -4x where x is the displacement from the mean position. The period of the particle is given by

DC PANDEY-SIMPLE HARMONIC MOTION-More than one option is correct
  1. Two smooth tunnels are dug from one side of earth's surface to the oth...

    Text Solution

    |

  2. Total energy of a particle executing oscillating motionis 3 joule and ...

    Text Solution

    |

  3. System shown in fig is in equilibrium and at rest. The spring and stri...

    Text Solution

    |

  4. In the figure shown, a block A of mass m is rigidy attached to a light...

    Text Solution

    |

  5. Passage IX) For SHM to take place force acting on the body should be p...

    Text Solution

    |

  6. Passage IX) For SHM to take place force acting on the body should be p...

    Text Solution

    |

  7. Passage X) A 2kg block hangs without vibrating at the bottom end of a ...

    Text Solution

    |

  8. Passage X) A 2kg block hangs without vibrating at the bottom end of a ...

    Text Solution

    |

  9. Passage X) A 2kg block hangs without vibrating at the bottom end of a ...

    Text Solution

    |

  10. Passage XI) The differential equation of a particle undergoing SHM is ...

    Text Solution

    |

  11. Passage XI) The differential equation of a particle undergoing SHM is ...

    Text Solution

    |

  12. The equation of motion may be given by

    Text Solution

    |

  13. Passage XII) A particle of mass m is constrained to move along x-axis....

    Text Solution

    |

  14. Passage XII) A particle of mass m is constrained to move along x-axis....

    Text Solution

    |

  15. Passage XII) A particle of mass m is constrained to move along x-axis....

    Text Solution

    |

  16. Passage XIII) Mr. Anoop having mass 50 ks is standing on a massless pl...

    Text Solution

    |

  17. Passage XIII) Mr. Anoop having mass 50 ks is standing on a massless pl...

    Text Solution

    |

  18. Passage XIV) A uniform cylindrical block of mass 2M and cross-sectiona...

    Text Solution

    |

  19. Passage XIV) A uniform cylindrical block of mass 2M and cross-sectiona...

    Text Solution

    |

  20. Passage XIV) A uniform cylindrical block of mass 2M and cross-sectiona...

    Text Solution

    |