Skip to content
Question

Q.The current density due to drift of electrons in a conductor is given by : (symbols have their usual meanings)

(a) neAvdneAv_d
(b) nAvde\dfrac{nAv_d}{e}
(c) nvdeA\dfrac{nv_d}{eA}
(d) nevdnev_d
CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
✓ Free question

Current density JJ is current per unit cross-sectional area. For electron drift, I=neAvdI = neAv_d, so J=I/A=nevdJ = I/A = ne v_d. The correct option is (d).

The key to this question is understanding what current density actually means — it’s not the same as current. Many students memorise the formula for current (I=neAvdI = neAv_d) and then pick option (a) without thinking. But current density JJ is defined as current per unit area: J=I/AJ = I/A.

Let’s walk through it step by step.

  1. Recall the definition of current density. Current density J⃗\vec{J} is a vector quantity that tells us how much current flows through a unit cross-sectional area perpendicular to the flow. Its magnitude is

J=IAJ = \frac{I}{A}

where II is the total current and AA is the cross-sectional area.

  1. Write the expression for current due to electron drift. When electrons drift with average velocity vdv_d, the charge crossing a cross-section per unit time is:

I=neAvdI = n e A v_d

Here nn is the number density of free electrons (number per unit volume), ee is the electronic charge, AA is the area, and vdv_d is the drift speed.

Note

Derivation: In time Δt\Delta t, electrons move a distance vdΔtv_d \Delta t. The volume swept is AvdΔtA v_d \Delta t, containing nAvdΔtn A v_d \Delta t electrons. Charge crossing = (nAvdΔt)e(n A v_d \Delta t) e, so current I=chargeΔt=neAvdI = \frac{\text{charge}}{\Delta t} = n e A v_d.

  1. Now divide by area to get current density.

J=IA=neAvdA=nevdJ = \frac{I}{A} = \frac{n e A v_d}{A} = n e v_d

The area cancels out — current density depends only on the charge density and drift speed, not on the conductor’s cross-section.

  1. Check the options against this result.
    • (a) neAvdneAv_d — this is II, not JJ.
    • (b) nevdA\dfrac{nev_d}{A} — has area in the denominator, wrong.
    • (c) nAvde\dfrac{nAv_d}{e} — charge ee is in the denominator, dimensionally wrong.
    • (d) nevdnev_d — matches exactly.
Watch out

A common mistake is to confuse current (II) with current density (JJ). The phrase “current density” is your cue to divide by area. Option (a) is the trap — it’s the formula for current, not current density.

Tip

You can also check dimensions: JJ has units of A/m². nevdne v_d gives (m⁻³)(C)(m/s) = C/(m²·s) = A/m². Option (a) gives A (current), not A/m².

✓Final answer

The correct option is (d) J=nevdJ = n e v_d.

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.