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Q.Define the term 'mobility' of charge carriers in a current carrying conductor. Obtain the relation for mobility in terms of relaxation time.

(OR)
Define the term 'drift velocity' of electrons in a current carrying conductor. Obtain the relationship between the current density and the drift velocity of electrons.
CBSECBSE Class XII Board 2020Subjective· 2mImportance★★★★★
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  1. Mobility μ=vdE=eτm\mu=\dfrac{v_d}{E}=\dfrac{e\tau}{m}.
  2. Drift velocity relates to current density by J=nevdJ=n e v_d.

Part (a)

Definition. The mobility of a charge carrier is the drift speed it acquires per unit electric field:

μ=∣vd∣E,[μ]=m2 V−1 s−1.\mu=\frac{|v_d|}{E},\qquad[\mu]=\text{m}^2\,\text{V}^{-1}\,\text{s}^{-1}.

In terms of relaxation time. An applied field EE exerts force eEeE on an electron, giving acceleration a=eEma=\dfrac{eE}{m}. Between collisions the electron accelerates for an average (relaxation) time τ\tau, so it acquires an average drift velocity

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

Therefore …

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