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Q.When 100 J of work is done on a fly wheel, its angular velocity is increased from 60 rpm to 180 rpm. What is the moment of inertia of the wheel?

Andhra Pradesh BieapBIEAP Intermediate Board (1st Year) 2026Subjective· 4mImportance★★★★★
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Using the work-energy theorem for rotation, W = (1/2)I(ω2^2 − ω1^2), the moment of inertia works out to about 0.633 kg·m^2.

Given: W = 100 J, ω1 = 60 rpm, ω2 = 180 rpm.

Convert rpm to rad/s (multiply by 2π/60):

ω1 = 60 x (2π/60) = 2π rad/s ≈ 6.283 rad/s

ω2 = 180 x (2π/60) = 6π rad/s ≈ 18.850 rad/s

By the work-energy theorem, the work done on a rotating body equals the change in its rotational kinetic energy:

W = (1/2) I (ω2^2 − ω1^2)

Compute ω2^2 − ω1^2:

ω2^2 = (6π)^2 = 36π^2 …

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