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Q.What do you understand by the following statement- "Self-inductance is the electromagnetic analogue of mass in mechanics".

Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2025Subjective· 2mImportance★★★★★
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Just as mass resists a change in velocity (Newton's law), self-inductance resists a change in current (Faraday/Lenz's law) — both quantify inertia in their respective domains.

In mechanics, mass mm is a measure of inertia: a larger mass requires a larger force to produce the same change in velocity (F=m dv/dtF = m\,dv/dt), i.e. mass opposes/resists any change in the state of motion.

In electromagnetism, self-inductance LL plays exactly the analogous role for electric current: when the current II through a coil changes, a self-induced emf opposes that change,

ε=−LdIdt\varepsilon = -L\frac{dI}{dt}

A larger LL means a larger opposing emf for the same rate of change of current — i.e. LL measures the coil's "electrical inertia", its tendency to oppose any change in the current flowing through it, just as mass opposes any change in velocity.

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