Home
Class 12
PHYSICS
A sinusoidal wave travelling in the posi...

A sinusoidal wave travelling in the positive x-direction has an amplitude of `15.0 cm`, a wavelength of `40.0 cm` and a frequency of `8.00 Hz. The vertical displacement of medium at t=0 and x=0 is also 15 cm as shown in figure.

(a) Find the angular wave number `k`, period `T`, angular frequency `omega` and speed `v` of the wave.
(b) Write a general expression for wave function.

Text Solution

Verified by Experts

(a) `k = (2pi)/(lambda) = (2pirad)/(40 cm) = (pi)/(20) rad//cm`
`t = (1)/(f) = (1)/(8) s , omega = 2pif = 16 s^(-1)`
`v = flambda = 320 cm//s`
(b) It is given that `A = 15 cm`
and also `y = 15 cm` at `x = 0` and `t = 0`
then using `y = A sin (omegat - kx + phi)`
`15 = 15 sin phi rArr sin phi = 1`
or `phi = (pi)/(2) rad`.
Therefore, the wave funcation is
`y = A sin (omegat - kx + (pi)/(2))'`
`= (15 cm) sin [(16pis^(-1))t - ((pi)/(20)(rad)/(cm)) x + (pi)/(2)]`
Promotional Banner

Topper's Solved these Questions

  • TRAVELLING WAVES

    RESONANCE ENGLISH|Exercise Solved Miscellaneous Problems|7 Videos
  • TRAVELLING WAVES

    RESONANCE ENGLISH|Exercise Board Level Exercise|27 Videos
  • TEST SERIES

    RESONANCE ENGLISH|Exercise PHYSICS|130 Videos
  • WAVE ON STRING

    RESONANCE ENGLISH|Exercise Exercise- 3 PART II|7 Videos

Similar Questions

Explore conceptually related problems

A sinusoidal wave travelling in the positive x-direction has an amplitude of 15.0 cm , a wavelength of 40.0 cm and a frequency of 8.00 Hz. The verticle displacement of the medium at t = 0 and x = 0 is also 15.0 cm as shown in figure. (a) Find the angular wave number k , period T , angular frequency omega and speed v of the wave. (b) Write a general expression for wave function.

A sinusoidal wave trsvelling in the positive direction on a stretched string has amplitude 2.0 cm , wavelength 1.0 m and velocity 5.0 m//s . At x = 0 and t= 0 it is given that y = 0 and (dely)/(delt) lt 0 . Find the wave function y (x, t) .

A transverse sinusoidal wave of wavelength 20 cm is moving along a string towards increasing x. the transverse displacement of the string particle at x=0 as a function of time is shown in figure. Q. The velocity of propagation of the wave is ?

A certain transverse sinusoidal wave of wavelength 20 cm is moving in the positive x direction. The transverse velocity of the particle at x=0 as a function of time is shown. The amplitude of the motion is:

A certain transverse sinusoidal wave of wavelength 20 cm is moving in the positive x direction. The transverse velocity of the particle at x=0 as a function of time is shown. The amplitude of the motion is:

A sound wave travels at a speed of 339 m//s . If its wavelength is 1.5 cm , what is the frequency of the wave ? Will it be audible ?

What is the time period of a wave having angular frequency (omega) equal to 0.5s^(-1) ?

A wave travels along the positive x-direction with a speed of 20 ms^-1 . The amplitude of the wave is 0.20 cm and the wavelength 2.0 cm. (a) Write a suitable wave equation which describes this wave. (b) What is the displacement and velocity of the particle at x = 2.0 cm at time t = 0 according to the wave equation written ?

A transverse wave of amplitude 0.5 m and wavelength 1 m and frequency 2 Hz is propagating in a string in the negative x - direction. The expression for this wave is [

The string shown in the figure has a sinusoidal wave travelling towards right. The frequency of the wave is n. the correct statement (s) is/are.

RESONANCE ENGLISH-TRAVELLING WAVES-Exercise- 3 PART I
  1. A sinusoidal wave travelling in the positive x-direction has an ampli...

    Text Solution

    |

  2. A harmonically moving transverse wave on a string has a maximum partic...

    Text Solution

    |

  3. A 20 cm long string, having a mass of 1.0 g, is fixed at both the ends...

    Text Solution

    |

  4. When two progressive waves y(1)=4sin(2x-6t)andy(2)=3sin(2x-6t-(pi)/(2)...

    Text Solution

    |

  5. A massless rod of length l is hung from the ceiling with the help of t...

    Text Solution

    |

  6. A transverse sinusoidal wave moves along a string in the positive x-di...

    Text Solution

    |

  7. A horizontal stretched string, fixed at two ends, is vibrating in its ...

    Text Solution

    |

  8. One end of a taut string of length 3 m along the x-axis is fixed at x ...

    Text Solution

    |

  9. A string is stretched betweeb fixed points separated by 75.0 cm. It ob...

    Text Solution

    |

  10. A steel wire of length 50sqrt(3) cm is connected to an aluminium wire ...

    Text Solution

    |

  11. An aluminium wire of cross-sectional area (10^-6)m^2 is joined to a st...

    Text Solution

    |

  12. The fundatmental frequency of a sonometer wire increases by 6 Hz if it...

    Text Solution

    |

  13. A metal wire with volume density rho and young's modulus Y is stretche...

    Text Solution

    |

  14. Find velocity of wave is string A &B.

    Text Solution

    |

  15. A string of length 50 cm is vibrating with a fundamental frequency of ...

    Text Solution

    |

  16. A string fixed at both is vibrating in the lowest mode of vibration fo...

    Text Solution

    |

  17. A guitar string is 90 cm long and has a fundamental frequency of 124 H...

    Text Solution

    |

  18. A piano wire weighing 6.00 g and having a length of 90.0 cm emits a fu...

    Text Solution

    |

  19. Length of a sonometer wire is 1.21 m. Find the length of the three seg...

    Text Solution

    |

  20. In the figure shown A and B are two ends of a string of length 100m. S...

    Text Solution

    |