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Physics · Ch 3 — Current Electricity

Electric Current

3.2

Electric Current

Understanding Electric Current

Electric current is fundamentally about the net flow of charge across a given area. It is not simply the total charge moving, but the net amount—the difference between charge flowing forward and backward.

Imagine a small area placed perpendicular to the direction of charge flow. Over a time interval tt:

  • Let q+q_+ be the net positive charge flowing forward across the area.
  • Let q−q_- be the net negative charge flowing forward across the area.

The net charge qq flowing forward in time tt is:

q=q+−q−q = q_+ - q_-

If the flow is steady (constant over time), the current II is defined as the constant ratio:

I=qtI = \frac{q}{t}

If II turns out negative, it simply means the net current is in the backward direction.


General Definition (for varying currents)

Currents are not always steady. For a more general definition, consider a small time interval Δt\Delta t (from tt to t+Δtt + \Delta t). Let ΔQ\Delta Q be the net charge flowing across a cross-section during Δt\Delta t.

The instantaneous current I(t)I(t) at time tt is defined as the limit of this ratio as Δt\Delta t approaches zero:

I(t)=lim⁡Δt→0ΔQΔtI(t) = \lim_{\Delta t \to 0} \frac{\Delta Q}{\Delta t}

This is the derivative of charge with respect to time: I=dQdtI = \frac{dQ}{dt}.


SI Unit: The Ampere

  • The SI unit of current is the ampere (symbol: A). …