Embibe Experts Solutions for Chapter: Sound Waves, Exercise 1: Exercise-1

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Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Sound Waves, Exercise 1: Exercise-1

Attempt the practice questions on Chapter 21: Sound Waves, Exercise 1: Exercise-1 with hints and solutions to strengthen your understanding. Alpha Question Bank for Medical: Physics solutions are prepared by Experienced Embibe Experts.

Questions from Embibe Experts Solutions for Chapter: Sound Waves, Exercise 1: Exercise-1 with Hints & Solutions

MEDIUM
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IMPORTANT

At the same temperature and pressure the densities of two diatomic gases are d1 and d2. The ratio of velocities of sound in these gases will be

MEDIUM
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IMPORTANT

16 tuning forks are arranged in the order of increasing frequencies. Any two successive forks give 8 beats per second when sounded together. If the last fork gives the octave of the first, then the frequency of the first fork is-

EASY
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A tuning fork of frequency 512 Hz, is vibrated with a sonometer wire and 6 beats per second are heard. The beat frequency reduces if the tension in the string is slightly increased. The original frequency of vibration of the string is

MEDIUM
NEET
IMPORTANT

A closed organ pipe and an open organ pipe are tuned to the same fundamental frequency. What is the ratio of their lengths?

EASY
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IMPORTANT

Two waves of lengths 50 cm and 51 cm produced 12 beats per second. The velocity of sound is-

EASY
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To obtain beats, the minimum difference in the frequencies of two sources is:

MEDIUM
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IMPORTANT

Two sound waves with wavelengths 5.0 m and 5.5 m respectively, each propagates in gas with velocity 330 m s-1. We expect the following number of beats per second:-

MEDIUM
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IMPORTANT

A police van moving with velocity 22 m s-1and emitting sound of frequency 176 Hz, follows a motorcycle Which is moving towards a stationary car and away from the police van. The stationary car is emitting frequency 165 Hz. Speed of sound air is 330 m s-1. If motorcyclist does not hear any beats, then his velocity is