Home
Class 11
PHYSICS
Equation of a transverse wave travelling...

Equation of a transverse wave travelling in a rope is given by
`y=5sin(4.0t-0.02 x)`
where y and x are expressed in cm and time in seconds. Calculate
(a) the amplitude, frequency,velocity and wavelength of the wave.
(b) the maximum transverse speed and acceleration of a particle in the rope.

Text Solution

Verified by Experts

(i). Given equation is
`y=5 sin (4.0t-0.02x)`
`Comparing this with standard equation `y=A sin (omegat-kx)`, we get
Amplitude `A= 5cm`
`omega=4.0 s^(-1)` and `k=0.02 cm^(-1)`
`:.` Frequency
`f=(omega)/(2pi)=(4.0)/(2pi)=(2)/(3.14)=0.637 s^(-1)`
Velocity
`v=(omega)/(k)=(4.0)/(0.02)=200 cm//s`
wavelength `lambda=v/f=(200)/(0.637)=314 cm`
(ii) The maxium velocity,`u_(max)=omegaA=4xx5=20 cm//s`.
Promotional Banner

Topper's Solved these Questions

  • TRAVELLING WAVES

    CENGAGE PHYSICS ENGLISH|Exercise Subjective|16 Videos
  • TRAVELLING WAVES

    CENGAGE PHYSICS ENGLISH|Exercise Single Correct|62 Videos
  • TRAVELLING WAVES

    CENGAGE PHYSICS ENGLISH|Exercise Exercise 5.1|9 Videos
  • TRANSMISSION OF HEAT

    CENGAGE PHYSICS ENGLISH|Exercise Single correct|9 Videos
  • VECTORS

    CENGAGE PHYSICS ENGLISH|Exercise Exercise Multiple Correct|5 Videos

Similar Questions

Explore conceptually related problems

The equation of a transverse wave travelling along x-axis is given by y = 10 sin pi= (0.01 x- 2.0t) where y and x are represented in centimeters and, in seconds. Find the amplitude, frequency velocity and wavelength of the wave.

The equation of a transverse wave travelling along +x axis is given by y=0.15 sin (1.57x-31.4t) where y and x are represented in m and t in s. Find the amplitude, frequency velocity and wavelength of the wave.

The equation of a progressive wave is y= 1.5sin(328t-1.27x) . Where y and x are in cm and t is in second. Calcualte the amplitude, frequency, time period and wavelength of the wave.

The equation of a transverse wave travelling in a rope is given by y=7 sin (4.0 t-0.02 x) where y and x are in cm and the time is in second. Calculate (i) the maximum transverse speed and (ii) the maximum particle acceleration?

The equation of a wave travelling in a rope is given by y=10 sin (2.0 t-0.04x) where y and x are expressed in cm and time t in second. Calculate the intensity of the wave if the density of the material of the rope is 1.3 xx 10^(3)kg//cm^3 .

The equation of progressive wave is given by y=10sin[300pi(t-(x)/(480))] where x and y are in metre and t is in second. Calculate the amplitude frequency time period and wavelength of the wave.

The equation of a transverse wave travelling on a rope given by y=10sinpi(0.01x-2.00t) whrer y and x are in cm and t in second .This maximum traverse speed of a particle in the rope is about

A transverse wave travelling on a taut string is represented by: Y=0.01 sin 2 pi(10t-x) Y and x are in meters and t in seconds. Then,

The equation of a progressive wave is given by y=a sin (628 t-31.4 x) If the distances are expressed in cms and time in seconds, then the wave velocity will be

The equation for the transverse wave travelling along a string is y = 4 sin 2pi ((t)/(0.05) -(x)/(60)) lengths expressed in cm and time period in sec. Calculate the wave velocity and maximum particle velocity.

CENGAGE PHYSICS ENGLISH-TRAVELLING WAVES-Exercise 5.2
  1. The equation of a travelling wave is given by y=+(b)/(a)sqrt(a^(2)-(...

    Text Solution

    |

  2. Does a travelling wave in one dimension represented by a function of ...

    Text Solution

    |

  3. A wave is propagating on a long stretched string along its length take...

    Text Solution

    |

  4. Equation of a transverse wave travelling in a rope is given by y=5si...

    Text Solution

    |

  5. The length of the wire shown in figure between the pulley is 1.5 m and...

    Text Solution

    |

  6. The equation of a travelling sound wave is y = 6.0 sin (600 t - 1.8 x)...

    Text Solution

    |

  7. The equation of a travelling sound wave is y = 6.0 sin (600 t - 1.8 x)...

    Text Solution

    |

  8. Spherical waves are emitted from a 1.0 W source in an isotropic non-ab...

    Text Solution

    |

  9. A wave travels out in all direction from a point source. Justify the e...

    Text Solution

    |

  10. For plane waves in the air of frequency 1000 Hz and the displace ampli...

    Text Solution

    |

  11. A heavy uniform rope is held vertically and is tensioned by clamping i...

    Text Solution

    |

  12. What is the phase diffrence between the particle 1 and 2 located as sh...

    Text Solution

    |

  13. Show that (a)y=(x+vt)^(2),(b)y=(x+t)^(2),(c )y=(x-vt)^(2), and (d) y=2...

    Text Solution

    |

  14. For a travelling harmonic wave y=2.0 cos(10t-0.0080x+0.35), where x an...

    Text Solution

    |

  15. The shows two snapshots, each of a wave travelling along a partic...

    Text Solution

    |

  16. A circular loop of string rotates about its axis on a frictionless hor...

    Text Solution

    |

  17. A sinusoidal wave is propagating along a streched string that lies alo...

    Text Solution

    |

  18. A simple harmonic oscillator at the point x=0 genrates a wave on a rop...

    Text Solution

    |

  19. A piano wire with mass 3.00 g and length 80.0 cm is stretched with a t...

    Text Solution

    |

  20. A wave on a string is described by y(x,t)=A cos (kx-omegat). (a) Graph...

    Text Solution

    |