Q.Write down the factors affecting velocity of sound in a gas.
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Start your 14-day free trial to unlock the full solution →Sound speed in a gas, v = square root of (gamma*P/rho), is governed mainly by temperature and the gas's density (molar mass), and is also affected by humidity and wind, but not directly by pressure at constant temperature.
By Laplace's correction to Newton's formula, the speed of sound in a gas is
v = square root of (gamma*P/rho)
where gamma is the ratio of specific heats, P is pressure, and rho is density.
The main factors affecting this speed are:
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Temperature: Using the ideal gas relation, P/rho = RT/M, so v = square root of (gammaRT/M). This shows v is proportional to square root of T — as temperature rises, the gas molecules move faster and transmit the sound disturbance more quickly, so the speed of sound increases with temperature.
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Density (molar mass) of the gas: For gases at the same temperature, v is proportional to 1/square root of M (where M is molar mass) — lighter gas molecules (like hydrogen) transmit sound faster than heavier ones (like carbon dioxide), because the molecules can respond and pass on the disturbance more quickly.
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Humidity: Moist air contains water vapour, which has a lower molar mass than the dry air components (nitrogen, oxygen) it displaces, making moist air slightly less dense; sound therefore travels slightly faster in humid air than in dry air.
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