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Q.What is self-induction and define the expression for self-inductance of a solenoid.

Kerala DhseKerala DHSE Plus Two Board 2024Subjective· 3mImportance★★★★★
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Self-induction is the induction of an opposing emf in a coil due to a change in the current (and hence flux) through the coil itself; for a long solenoid this gives L=μ0n2AlL=\mu_0n^2Al.

Self-induction: When the current II through a coil changes, the magnetic flux ϕB\phi_B linked with the coil (created by its own current) also changes. By Faraday's law, this changing self-flux induces an emf in the coil itself, which by Lenz's law always opposes the change producing it (opposes a growing current, and opposes a decaying current from dying). This phenomenon is called self-induction, and the coefficient of proportionality between flux linkage and current is the self-inductance LL:

NϕB=LI⇒ε=−LdIdtN\phi_B = LI \qquad\Rightarrow\qquad \varepsilon = -L\dfrac{dI}{dt}

Self-inductance of a long solenoid: Consider a solenoid of length ll, cross-sectional area AA, with NN total turns (so n=N/ln=N/l turns per unit length), carrying current II.

The magnetic field inside a long solenoid (uniform, along the axis) is:

B=μ0nIB = \mu_0 n I

Flux through one turn =BA=μ0nIA=BA=\mu_0nIA. Total flux linkage (through all N=nlN=nl turns): …

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