Practice question
Question
What causes the resistivity of a conductor to deviate from Ohm’s law at very high electric fields?
Explanation
**Current and drift relation** I = n e A v_d shows current proportional to drift velocity and area. For A=6×10⁻⁷ m², I=1.8 A, n=8.5×10²⁸ m⁻³, v_d =1.8/(8.5×10²⁸×1.6×10⁻¹⁹×6×10⁻⁷)=2.2×10⁻⁴ m/s, illustrating small drift speed even for ampere currents. At high fields, resistivity ( rho = m / (n e² tau) ) may change as tau or n varies (e.g., due to electron saturation or heating), making the I -versus- V relationship non-linear and violating Ohm’s law. 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, V = ε - I r and P = I²R, evaluation yields
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