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Q.Derive the expression for conductivity of a material : σ = ne^2τ/m ; where the terms have their usual meaning.

Karnataka PUCKarnataka II PUC Board 2020Subjective· 5mImportance★★★★★
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Field EE drives electrons with drift velocity vd=eEτmv_d=\dfrac{eE\tau}{m}; current density J=nevdJ=nev_d; comparing with J=σEJ=\sigma E gives σ=ne2τm\sigma=\dfrac{ne^2\tau}{m}.

Concept. In a conductor the free electrons move randomly, but an applied electric field E⃗\vec E gives them a small net drift velocity opposite to E⃗\vec E. Collisions with ions limit this drift; the average time between collisions is the relaxation time τ\tau.

Step 1 — Drift velocity. The force on an electron is F=eEF=eE, giving acceleration a=eEma=\dfrac{eE}{m}. Over the average time τ\tau between collisions, the drift velocity acquired is

vd=aτ=eEτm.v_d = a\tau = \frac{eE\tau}{m}.

Step 2 — Current density. If nn is the number of free electrons per unit volume and AA the cross-section, the current is I=neAvdI = neAv_d, so the current density is

J=IA=ne vd=ne⋅eEτm=ne2τm E.J = \frac{I}{A} = ne\,v_d = ne\cdot\frac{eE\tau}{m} = \frac{ne^2\tau}{m}\,E.

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