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Question

What is the significance of the relaxation time in the context of electron drift in a conductor?

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Explanation

**Mobility** μ = v_d/E = e τ/m, τ relaxation time (s), measures ease of electron drift under field E (V/m). Conductivity σ = n e μ = 1/ρ, linking microscopic τ to macroscopic resistivity, explaining why metals conduct well due to large n and τ. Relaxation time ( tau ) is the average time between electron collisions with lattice ions. It determines drift velocity ( v_d = e E tau / m ), affecting how quickly electrons respond to the field and thus the conductor’s conductivity. Applying I = n e A v_d, R = ρ l/A, R_t = R₀[1+αΔT], Kirchhoff's ΣI=0, ΣV=0, R_eq series/parallel,

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