Consider the following statements about sound passing through a gas.

A: The pressure of the gas at a point oscillates in time.
B: The position of a small layer of the gas oscillates in time.

1. Both A and B are correct.
2. A is correct but B is wrong.
3. B is correct but A is wrong.
4. Both A and B are wrong.

Subtopic:  Pressure Wave in Sound |
 69%
From NCERT
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When we clap our hands, the sound produced is best described by
(Here p denotes the change in pressure from the equilibrium value)

1. p = p0 sin(kx – ωt)

2. p = p0 sin kx cos ωt

3. p = p0 cos kx sin ωt

4. p = \(\sum\)p0n sin(knx – ωnt)

Subtopic:  Pressure Wave in Sound |
From NCERT
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The bulk modulus and the density of water are greater than those of air. With this much of information, we can say that velocity of sound in air

1. is larger than its value in water

2. is smaller than its value in water

3. is equal to its value in water

4. cannot be compared with its value in water

Subtopic:  Speed of Sound |
From NCERT
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A tuning fork sends sound waves in the air. If the temperature of the air increases, which of the following parameters will change?

1. Displacement amplitude

2. Frequency

3. Wavelength

4. Time period

Subtopic:  Speed of Sound |
 62%
From NCERT
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When sound wave is refracted from air to water, which of the following will remain unchanged?

1. Wave number

2. Wavelength

3. Wave velocity

4. Frequency

Subtopic:  Wave Motion |
 88%
From NCERT
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The speed of sound in a medium depends on:

1. the elastic property but not on the inertia property
2. the inertia property but not on the elastic property
3. the elastic property as well as the inertia property
4. neither the elastic property nor the inertia property
Subtopic:  Speed of Sound |
 73%
From NCERT
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NEET 2023 - Target Batch - Aryan Raj Singh
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Two sound waves move in the same direction in the same medium. The pressure amplitudes of the waves are equal but the wavelength of the first wave is double the second. Let the average power transmitted across cross-section by the first wave be \(P_1\) and that by the second wave be \(P_2.\) Then:

1. \(P_1=P_2~~~~~\) 2. \(P_1=4P_2~~~~~\)
3. \(P_2=2P_1\) 4. \(P_2=4P_1\)
Subtopic:  Energy of Waves |
From NCERT
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When two waves with same frequency and constant phase difference interfere,

1. there is a gain of energy.
2. there is a loss of energy.
3. the energy is redistributed and the distribution changes with time.
4. the energy is redistributed and the distribution remains constant in time.

Subtopic:  Energy of Waves |
 71%
From NCERT
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An open organ pipe of length \(L\) vibrates in its fundamental mode. The pressure variation is maximum:

1. at the two ends
2. at the middle of the pipe
3. at a distance \(\frac{L}{4}\) inside the ends
4. at a distance \(\frac{L}{8}\) inside the ends
Subtopic:  Standing Waves |
 60%
From NCERT
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An organ pipe, open at both ends, contains

1. longitudinal stationary waves

2. longitudinal travelling waves

3. transverse stationary waves

4. transverse travelling waves

Subtopic:  Standing Waves |
 57%
From NCERT
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