Home
Class 11
PHYSICS
When a sound wave enters the ear, it set...


When a sound wave enters the ear, it sets the eardrum into oscillation, which in turn causes oscillation of 3 tiny bones in the middle ear called ossicles. This oscillation is finally transmitted to the fluid filled in inner portion of the ear termed as inner ear, the motion of the fluid disturbs hair cells within the inner ear which transmit nerve impulses to the brain with the information that a sound is present. The theree bones present in the middle ear are named as hammer, anvil and stirrup. Out of these the stirrup is the smallest one and this only connects the middle ear to inner ear as shown in the figure below. The area of stirrup and its extent of connection with the inner ear limits the sensitivity of the human ear consider a person's ear whose moving part of the eardrum has an area of about `50mm^2` and the area of stirrup is about `5mm^2`. The mass of ossicles is negligible. As a result, force exerted by sound wave in air on eardum and ossicles is same as the force exerted by ossicles on the inner ear. Consider a sound wave having maximum pressure fluctuation of `4xx10^-2Pa` from its normal equilibrium pressure value which is equal to `10^5Pa`. Frequency of sound wave in air is `332(m)/(s)`. Velocity of sound wave in fluid (present in inner ear) is `1500(m)/(s)`. Bulk modulus of air is `1.42xx10^5Pa`. Bulk modulus of fluid is `2.18xx10^9Pa`.
Q. Find the displacement amplitude of given sound wave in the fluid of inner ear.

A

`4.4xx10^(-11)m`

B

`8xx10^(11)m`

C

`3.65xx10^(-11)m`

D

`8.1xx10^(-12)m`

Text Solution

Verified by Experts

The correct Answer is:
C

Displacement amplitude
`A=((trianglep_0)/(BK))_("Inner ear")`
`K_("Inner ear")=(omega)/(V)=(2pixx1200)/(1500)=5.03(rad)/(m)`
`A=(0.4)/(5.03xx2.18xx10^9)=3.65xx10^(-11)m`
Promotional Banner

Topper's Solved these Questions

  • SOUND WAVES AND DOPPLER EFFECT

    CENGAGE PHYSICS|Exercise Integer|16 Videos
  • SOUND WAVES AND DOPPLER EFFECT

    CENGAGE PHYSICS|Exercise Assertion-Reasoning|24 Videos
  • RIGID BODY DYNAMICS 2

    CENGAGE PHYSICS|Exercise Interger|2 Videos
  • SUPERPOSITION AND STANDING WAVES

    CENGAGE PHYSICS|Exercise Comprehension Type|5 Videos

Similar Questions

Explore conceptually related problems

When a sound wave enters the ear, it sets the eardrum into oscillation, which in turn causes oscillation of 3 tiny bones in the middle ear called ossicles. This oscillation is finally transmitted to the fluid filled in inner portion of the ear termed as inner ear, the motion of the fluid disturbs hair cells within the inner ear which transmit nerve impulses to the brain with the information that a sound is present. The theree bones present in the middle ear are named as hammer, anvil and stirrup. Out of these the stirrup is the smallest one and this only connects the middle ear to inner ear as shown in the figure below. The area of stirrup and its extent of connection with the inner ear limits the sensitivity of the human ear consider a person's ear whose moving part of the eardrum has an area of about 50mm^2 and the area of stirrup is about 5mm^2 . The mass of ossicles is negligible. As a result, force exerted by sound wave in air on eardum and ossicles is same as the force exerted by ossicles on the inner ear. Consider a sound wave having maximum pressure fluctuation of 4xx10^-2Pa from its normal equilibrium pressure value which is equal to 10^5Pa . Frequency of sound wave in air is 332(m)/(s) . Velocity of sound wave in fluid (present in inner ear) is 1500(m)/(s) . Bulk modulus of air is 1.42xx10^5Pa . Bulk modulus of fluid is 2.18xx10^9Pa . Q. Find the pressure amplitude of given sound wave in the fluid of inner ear.

When a sound wave enters the ear, it sets the eardrum into oscillation, which in turn causes oscillation of 3 tiny bones in the middle ear called ossicles. This oscillation is finally transmitted to the fluid filled in inner portion of the ear termed as inner ear, the motion of the fluid disturbs hair cells within the inner ear which transmit nerve impulses to the brain with the information that a sound is present. The theree bones present in the middle ear are named as hammer, anvil and stirrup. Out of these the stirrup is the smallest one and this only connects the middle ear to inner ear as shown in the figure below. The area of stirrup and its extent of connection with the inner ear limits the sensitivity of the human ear consider a person's ear whose moving part of the eardrum has an area of about 50mm^2 and the area of stirrup is about 5mm^2 . The mass of ossicles is negligible. As a result, force exerted by sound wave in air on eardum and ossicles is same as the force exerted by ossicles on the inner ear. Consider a sound wave having maximum pressure fluctuation of 4xx10^-2Pa from its normal equilibrium pressure value which is equal to 10^5Pa . Frequency of sound wave in air is 332(m)/(s) . Velocity of sound wave in fluid (present in inner ear) is 1500(m)/(s) . Bulk modulus of air is 1.42xx10^5Pa . Bulk modulus of fluid is 2.18xx10^9Pa . Q. With respect to information provided above, mark the correct statement.

When a sound wave enters the ear, it sets the eardrum into oscillation, which in turn causes oscillation of 3 tiny bones in the middle ear called ossicles. This oscillation is finally transmitted to the fluid filled in inner portion of the ear termed as inner ear, the motion of the fluid disturbs hair cells within the inner ear which transmit nerve impulses to the brain with the information that a sound is present. The theree bones present in the middle ear are named as hammer, anvil and stirrup. Out of these the stirrup is the smallest one and this only connects the middle ear to inner ear as shown in the figure below. The area of stirrup and its extent of connection with the inner ear limits the sensitivity of the human ear consider a person's ear whose moving part of the eardrum has an area of about 50mm^2 and the area of stirrup is about 5mm^2 . The mass of ossicles is negligible. As a result, force exerted by sound wave in air on eardum and ossicles is same as the force exerted by ossicles on the inner ear. Consider a sound wave having maximum pressure fluctuation of 4xx10^-2Pa from its normal equilibrium pressure value which is equal to 10^5Pa . Frequency of sound wave in air is 332(m)/(s) . Velocity of sound wave in fluid (present in inner ear) is 1500(m)/(s) . Bulk modulus of air is 1.42xx10^5Pa . Bulk modulus of fluid is 2.18xx10^9Pa . Q. If the person is using an hearing aid, which increase the intensity of given sound wave change as perceived by inner ear?

When a sound wave enters the ear, it sets the eardrum into oscillation, which in turn causes oscillation of 3 tiny bones in the middle ear called ossicles. This oscillation is finally transmitted to the fluid filled in inner portion of the ear termed as inner ear, the motion of the fluid disturbs hair cells within the inner ear which transmit nerve impulses to the brain with the information that a sound is present. The theree bones present in the middle ear are named as hammer, anvil and stirrup. Out of these the stirrup is the smallest one and this only connects the middle ear to inner ear as shown in the figure below. The area of stirrup and its extent of connection with the inner ear limits the sensitivity of the human ear consider a person's ear whose moving part of the eardrum has an area of about 50mm^2 and the area of stirrup is about 5mm^2 . The mass of ossicles is negligible. As a result, force exerted by sound wave in air on eardum and ossicles is same as the force exerted by ossicles on the inner ear. Consider a sound wave having maximum pressure fluctuation of 4xx10^-2Pa from its normal equilibrium pressure value which is equal to 10^5Pa . Frequency of sound wave in air is 332(m)/(s) . Velocity of sound wave in fluid (present in inner ear) is 1500(m)/(s) . Bulk modulus of air is 1.42xx10^5Pa . Bulk modulus of fluid is 2.18xx10^9Pa . Q. This person (without hearing aid machine) is sitting inside a busy restaurant where average sound intensity is 3.2xx10^-5(W)/(m^2) . How much energy in the form of sound is taken up by the person in his meal time of 1 h?

From ourter to inner side, the squence of three bones present in the middle ear of mammals is

Largest ear ossicle is

In the internal ear, the 'organ of corti' which bear hair cells is located in

CENGAGE PHYSICS-SOUND WAVES AND DOPPLER EFFECT-Comprehension
  1. In the figure shown below, a source of sound having power 12xx10^-6W i...

    Text Solution

    |

  2. In the figure shown below, a source of sound having power 12xx10^-6W i...

    Text Solution

    |

  3. In the figure shown below, a source of sound having power 12xx10^-6W i...

    Text Solution

    |

  4. When a sound wave enters the ear, it sets the eardrum into oscillation...

    Text Solution

    |

  5. When a sound wave enters the ear, it sets the eardrum into oscillation...

    Text Solution

    |

  6. When a sound wave enters the ear, it sets the eardrum into oscillation...

    Text Solution

    |

  7. When a sound wave enters the ear, it sets the eardrum into oscillation...

    Text Solution

    |

  8. When a sound wave enters the ear, it sets the eardrum into oscillation...

    Text Solution

    |

  9. A source of sound and detector are arranged as shown in Fig. The detec...

    Text Solution

    |

  10. A source of sound and detector are arranged as shown in Fig. The detec...

    Text Solution

    |

  11. A source of sound and detector are arranged as shown in Fig. The detec...

    Text Solution

    |

  12. As shown if Fig. a vibrating tuning fork of frequency 512 Hz is moving...

    Text Solution

    |

  13. As shown if Fig. a vibrating tuning fork of frequency 512 Hz is moving...

    Text Solution

    |

  14. As shown if Fig. a vibrating tuning fork of frequency 512 Hz is moving...

    Text Solution

    |

  15. As shown if Fig. a vibrating tuning fork of frequency 512 Hz is moving...

    Text Solution

    |

  16. A source of sound with natural frequency f0=1800Hz moves uniformly alo...

    Text Solution

    |

  17. A source of sound with natural frequency f0=1800Hz moves uniformly alo...

    Text Solution

    |

  18. A source of sound and a detector are placed at the same place on groun...

    Text Solution

    |

  19. A source of sound and a detector are placed at the same place on groun...

    Text Solution

    |

  20. A source of sound and a detector are placed at the same place on groun...

    Text Solution

    |