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Answer Questions · Q12

Q.DC current flows in a metal piece of non-uniform cross-section. Which of these quantities remains constant along the conductor: current, current density or drift speed?

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In a steady (DC) circuit, charge cannot accumulate or disappear anywhere along a conductor -- whatever charge flows INTO any section per second must flow OUT per second, by conservation of charge (this is the continuity condition underlying Eq. 11.1-11.2). Since the wire has only one path with no branching, the CURRENT II (the rate of charge flow) must therefore be exactly the SAME at every cross-section along the wire, whether the wire is thick or thin at that point.

However, the CURRENT DENSITY J=I/AJ=I/A (Eq. 11.7) depends on the LOCAL cross-sectional area AA, which varies along a non-uniform wire -- so JJ is LARGER where the wire is thinner (smaller AA) and SMALLER where it is thicker, even though II itself stays the same everywhere. Likewise, from J=nevdJ=nev_d (Eq. 11.6/11.8, and as derived in Short Answer ii above), the DRIFT SPEED vd=J/(ne)v_d=J/(ne) also varies inversely with the local area AA (for a fixed nn, since it's the same material): electrons must speed up through a narrow section and slow dow …

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