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Q.Write down Hooke's law for elastic materials. The average depth of Indian Ocean is about 3000 m. Calculate the fractional compression of water at the bottom of the ocean.

Meghalaya MboseMBOSE Meghalaya 11th Board 2023Subjective· 3mImportance★★★★★
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Hooke's law: stress proportional to strain. Fractional compression dV/V = pressure/bulk modulus is about 1.34x10^-2 (about 1.3%) at 3000 m depth.

Hooke's law for elastic materials: within the elastic limit, the stress developed in a body is directly proportional to the strain produced in it.

Stress is proportional to Strain, i.e., Stress = (a constant) x Strain

The proportionality constant depends on the type of stress/strain and the material, and is called the modulus of elasticity for that situation (Young's modulus for longitudinal stress-strain, shear modulus for shear stress-strain, and bulk modulus for volume stress-strain).

For a fluid under uniform pressure on all sides, the relevant relation is:

B = (change in pressure, delta-P) / (fractional change in volume, -dV/V)

so that the fractional compression is: dV/V = delta-P / B

Step 1: Find the pressure at the bottom of the ocean (the extra pressure due to the water column above, over and above atmospheric pressure).

delta-P = rho g h, where rho = density of water is about 1000 kg/m^3 (standard approximation), g = 9.8 m/s^2, h = 3000 m.

delta-P = 1000 x 9.8 x 3000 = 2.94x10^7 Pa.

Step 2: Use the bulk modulus of water, B = 2.2x10^9 N/m^2 (a standard tabulated value).

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