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Q.A bat emits ultrasonic sound of frequency 1000 kHz in air. If this sound meets a water surface, what is the wavelength of

(a) the reflected sound?
(b) the transmitted sound? (Given speed of sound in air is 340 m/s and in water is 1486 m/s).
Meghalaya MboseMBOSE Meghalaya 11th Board 2020Subjective· 3mImportance★★★★★
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Frequency is unchanged by reflection or transmission across a boundary; dividing the unchanged frequency (1000 kHz) into each medium's own speed of sound gives the wavelength in that medium.

Given: source frequency f = 1000 kHz = 1.0 x 10^6 Hz, speed of sound in air v_air = 340 m/s, speed of sound in water v_water = 1486 m/s.

Key physics: When a wave meets a boundary between two media, part of it REFLECTS back into the original medium, and part of it is TRANSMITTED into the new medium. In BOTH cases, the FREQUENCY of the wave remains unchanged (frequency is set by the source and is preserved across reflection/refraction) — only the wave SPEED and WAVELENGTH change (and only for the transmitted part, since it enters a new medium with a different speed).

(a) Reflected sound: This sound continues travelling in the SAME medium (air), so it still has speed v_air = 340 m/s, and its frequency is unchanged at f = 1.0 x 10^6 Hz.

lambda_reflected = v_air / f = 340 / (1.0 x 10^6) = 3.4 x 10^-4 m = 0.34 mm

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