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Q.Find the expression of resistivity of a conductor in terms of relaxation time. What is the effect of temperature on the resistivity? OR Using Kirchoff's rules, deduce the balanced condition of a Wheatstone bridge. Name a practical device where Wheatstone bridge principle is applied.

Nagaland NbseNagaland Board of School Education 2025Subjective· 3mImportance★★★★★
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Resistivity comes out as ρ = m/(ne²τ) from the drift-velocity picture of conduction; since τ falls as temperature rises, metallic resistivity rises with temperature.

Consider free electrons of charge e, mass m, and number density n in a conductor, subjected to electric field E. Between collisions (average time τ, the relaxation time), an electron acquires drift velocity

vd=eEτmv_d = \frac{eE\tau}{m}

Current density is J=nevd=ne2EτmJ = nev_d = \frac{ne^2E\tau}{m}

Comparing with the microscopic form of Ohm's law J=σEJ = \sigma E:

σ=ne2τm\sigma = \frac{ne^2\tau}{m}

Resistivity is the reciprocal of conductivity:

ρ=1σ=mne2τ\rho = \frac{1}{\sigma} = \frac{m}{ne^2\tau}

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