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Question

Physics Question on elastic moduli

Compute the bulk modulus of water from the following data: Initial volume = 100.0 litre, Pressure increase = 100.0 atm (1 atm = 1.013 × 105 Pa), Final volume = 100.5 litre. Compare the bulk modulus of water with that of air (at constant temperature). Explain in simple terms why the ratio is so large.

Answer

Initial volume, V1 = 100.0l = 100.0 × 10 - 3 m3
Final volume, V2 = 100.5 l = 100.5 ×10 -3 m3
Increase in volume, ΔV = V2 - V1 = 0.5 × 10 - 3 m3
Increase in pressure, Δp = 100.0 atm = 100 × 1.013 × 10 5 Pa

Bulk modulus = ΔpΔV/V1=Δp×V1ΔV\frac{Δp }{ ΔV / V_1} =\frac{ Δp × V_1 }{ ΔV}

=100×1.013×105×100×1030.5×1063= \frac{100 × 1.013 × 10 ^5 × 100 × 10 ^{- 3 }}{ 0.5 × 106^{ - 3 }}

= 2.026 × 10 9 Pa
Bulk modulus of air = 1.0 × 10 5 Pa

Bulk modulus of water Bulk modulus of air∴\frac{ \text{Bulk modulus of water }}{ \text{Bulk modulus of air} }

=2.026×1091.0×105= \frac{2.026 × 10 ^9 }{ 1.0 × 10^ 5 }

= 2.026 × 10 4

This ratio is very high because air is more compressible than water.