English

Figure below shows the distance-displacement graph of two waves A and B. Compare i. the amplitude, ii. the wavelength of the two waves. - Physics

Advertisements
Advertisements

Question

Figure below shows the distance-displacement graph of two waves A and B. Compare

  1. the amplitude,
  2. the wavelength of the two waves.

Numerical

Solution

Amplitude is the maximum displacement from the mean position.

For A maximum displacement = 10 cm and

for B the maximum displacement = 5 cm.

(i) The ratio of maximum amplitude is `"A"_1/"A"_2 = 10/5 = 2 : 1`

Wavelength of A = 8 cm

Wavelength of B = 16 cm

(ii) The ratio of wavelength is `lambda_1/lambda_2 = 8/16 = 1 : 2`

shaalaa.com
  Is there an error in this question or solution?
Chapter 7: Sound - Exercise 7 (A) 3 [Page 155]

APPEARS IN

Selina Physics [English] Class 10 ICSE
Chapter 7 Sound
Exercise 7 (A) 3 | Q 12 | Page 155

RELATED QUESTIONS

What should be the minimum distance between source and reflector in water so that echo is heard distinctly?
(The speed of sound in water = 1400 m s-1)


A RADAR sends a signal with a speed of 3 x 108 m s-1 to an aeroplane at a distance of 300 km from it. After how much time is the signal received back after reflection from the aeroplane?


A ship on the surface of water sends a signal and receives it back from a submarine inside water after 4 s. Calculate the distance of the submarine from the ship. (The speed of sound in water is 1450 ms-1)


On sending an ultrasonic wave from a ship towards the bottom of a sea, the time interval between sending the wave and receiving it back is found to be 1.5 s. If the velocity of wave in sea water is 1400 m s-1, find the depth of the sea.


A man fires a gun and hears its echo after 5 s. The man then moves 310 m towards the hill and fires his gun again. This time he hears the echo after 3 s. Calculate the speed of sound.

The smoke from the gun barrel is seen 2 seconds before the explosion is heard. If the speed of sound in air is 340 ms−1, calculate the distance of the observer from the gun. State the approximation used.


A ship which is stationary at a distance of 680 m from the shore, sends a signal to the coast. Its echo is heard in 4s. Find the velocity of sound.


The wavelength and frequency of the sound wave in a certain medium is 40 cm and 835 Hz respectively. In the same medium if another wave has a wavelength equal to 32 cm, calculate its frequency.


A man standing between two cliffs produces a sound and hears two successive echoes at intervals of 3s and 4s respectively. Calculate the distance between the two cliffs. The speed of sound in the air is 330 ms−1.


A man standing in front of a vertical cliff fires a gun. He hears an echo after 35s. On moving close to the cliff by 82.5 m he fires again. This time he hears the echo after 2.55s. Calculate the speed of sound, distance, and the initial position of man from the cliff.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×