Q.Which statement is true ?
🔒You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Intensity Loudness and Pitch
From a Ripple to a Roar: What Makes Sound "Loud" and "High"?
Think of a calm lake. Drop a small pebble — you get a gentle ripple that fades quickly. Drop a big rock — you get tall waves that travel far and hit the shore with force. That difference in energy is the first intuition for intensity and loudness.
Now imagine two different ripples: one that rises and falls slowly (say, one wave every two seconds) and another that jiggles rapidly (ten waves per second). The slow one feels like a gentle swell; the fast one feels like a buzz. That difference in rate is the intuition for frequency and pitch.
Sound works exactly the same way. A sound wave is a travelling disturbance in air pressure. Two independent properties of that wave determine everything you hear:
- How much energy the wave carries → determines loudness.
- How fast the wave oscillates → determines pitch.
Intensity and Loudness
Intensity is a physical, measurable quantity. It is the power carried by the sound wave per unit area, measured in watts per square metre (W/m2). A bigger amplitude of the pressure variation means more energy is being transferred, so intensity is higher.
I=AP
where P is the power (energy per second) and A is the area the wave spreads over.
Loudness is the subjective sensation your brain creates from that intensity. It is not the same thing. Your ear does not respond linearly — it compresses a huge range of intensities into a manageable range of perceived loudness. A sound that is ten times more intense does not sound ten times louder; it sounds only about twice as loud.
The key relationship: loudness increases with intensity, but logarithmically. This is why we use the decibel scale:
β=10log10(I0I)
where I0=10−12 W/m2 is the threshold of hearing (the faintest sound a healthy human ear can detect).
A whisper is about 10−10 W/m2 (20 dB), normal conversation is 10−6 W/m2 (60 dB), and a jet engine at close range is 102 W/m2 (140 dB). That is a trillion-fold range in intensity, but only a 120 dB range in loudness.
Do not confuse intensity (a physical quantity) with loudness (a psychological perception). Two sounds of equal intensity can be perceived as having different loudness if their frequencies differ — the human ear is most sensitive around 1–4 kHz.
Frequency and Pitch
Frequency is the physical property: the number of complete oscillations (cycles) the sound wave makes per second. Its unit is the hertz (Hz). A tuning fork marked 256 Hz makes 256 compressions and rarefactions of air every second.
Pitch is the subjective sensation — how "high" or "low" a note sounds to you. A flute produces a high pitch (high frequency, around 1 kHz), a bass drum produces a low pitch (low frequency, around 50 Hz).
The relationship is simpler than for loudness: pitch increases monotonically with frequency. Double the frequency, and the pitch goes up by one octave — a musical interval that sounds like a natural jump (e.g., from middle C to the next C above). …
The intensity of a wave is proportional to the square of its amplitude, so doubling the amplitude quadruples the intensity. …
Intensity is proportional to the square of amplitude. Answer (B).
The energy carried by a wave, and hence its intensity I (power per unit area), is proportional to the square of the amplitude A:
I is proportional to A^2.
…
- CBSE 2026Set ANNUAL1 markMCQQ.Which statement is true ?(a) Amplitude ∝ Intensity(b) Intensity ∝ (Amplitude)^2(c) Intensity ∝ 1/Amplitude(d) None of these
›Reveal solutionSolution
Intensity is proportional to the square of amplitude. Answer (B).
The energy carried by a wave, and hence its intensity I (power per unit area), is proportional to the square of the amplitude A:
I is proportional to A^2.
…
- CBSE 2024Set ANNUAL1 markMCQQ.If the level of intensity of any tone is 20 decibel, then the intensity will be equal to (A) 10 W/m^2 (B) 10^-10 W/m^2 (C) 10^10 W/m^2 (D) none of these
›Reveal solutionSolution
At 20 dB, intensity I=10−10W/m2.
Sound intensity level: β=10log10(I0I), with reference intensity I0=10−12W/m2.
…
- CBSE 2024Set ANNUAL1 markMCQQ.Loudness of sound depends on (A) Frequency (B) Amplitude (C) Velocity (D) Wavelength
›Reveal solutionSolution
Loudness of sound depends on amplitude.
Loudness is the human perception of sound intensity. Intensity of a wave is proportional to the square of its amplitude (I∝A2), so larger-amplitude sound waves are perceived as louder. Frequency instead determines pitch, velocity is a property of th …
- CBSE 2024Set ANNUAL1 markMCQQ.If the ratio of intensities of two waves is 4:1, then the ratio of their amplitudes is (A) 2:1 (B) 1:2 (C) 4:1 (D) 1:4
›Reveal solutionSolution
Amplitude ratio =intensity ratio=2:1.
Intensity of a wave is proportional to the square of its amplitude: I∝A2.
…
- CBSE 2022Set ANNUAL1 markMCQQ.When one limb of a tuning fork is cut slightly its frequency —(a) Decreases(b) Increases(c) Remain same(d) None of these
›Reveal solutionSolution
Cutting (shortening) a prong of a tuning fork increases its frequency.
The frequency of a tuning fork depends on the dimensions and elasticity of its prongs and is inversely related to the length of the prong (n∝1/L2 for a vibrating bar). When a limb is filed or cut so that it becomes shorter, the …
- CBSE 2018Set ANNUAL1 markQ.What is the range of frequency of audible sound?
›Reveal solutionSolution
Audible sound for a normal human ear lies between 20 Hz and 20,000 Hz (20 kHz); frequencies below this are infrasonic and above this are ultrasonic.
Sound waves are mechanical (longitudinal) waves, and the human ear responds to only a limited band of frequencies:
- Below 20 Hz: infrasonic (inaudible to humans, but some animals like elephants can sense it)
- 20 Hz to 20,000 Hz: audible range for a healthy young human ear …
🎓Unlock everything free for 14 days
- ✓Full step-by-step solutions
- ✓Concept-first explanations
- ✓Methods, shortcuts & mistakes
- ✓PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.