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Q.Why does sound travel faster in iron than in air ?

Manipur CohsemCouncil of Higher Secondary Education, Manipur (Higher Secondary 1st Year) 2021Subjective· 1mImportance★★★★★
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Sound speed depends on E/ρ\sqrt{E/\rho}; iron's elastic modulus is so much larger than air's that it more than compensates for iron's higher density, so sound travels much faster in iron.

The speed of a mechanical (sound) wave through any medium is given by:

v=Eρv = \sqrt{\dfrac{E}{\rho}}

where EE is the relevant elastic modulus of the medium (Young's modulus for a solid rod, bulk modulus for a gas/liquid) and ρ\rho is the density of the medium.

For iron, the Young's modulus is extremely large (iron strongly resists compression/extension — it is a stiff solid, E≈2×1011 PaE \approx 2 \times 10^{11}\ \text{Pa}), whereas air's bulk modulus is very small (≈1.4×105 Pa\approx 1.4 \times 10^5\ \text{Pa} at atmospheric pressure) — a difference of roughly a million-fold.

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