Skip to content
Question

Q.The potential difference across a cell in an open circuit is 8 V8\ \text{V}. It falls to 4 V4\ \text{V} when a current of 4 A4\ \text{A} is drawn from it. The internal resistance of the cell is :

(a) 4 Ω4\ \Omega
(b) 3 Ω3\ \Omega
(c) 2 Ω2\ \Omega
(d) 1 Ω1\ \Omega
CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
✓ Free question

The key idea is that the open-circuit voltage is the cell’s EMF (E=8 V\mathcal{E} = 8\ \text{V}), and the drop to 4 V4\ \text{V} when 4 A4\ \text{A} flows is due entirely to the voltage drop across the internal resistance rr. Using V=E−IrV = \mathcal{E} - Ir, we get r=1 Ωr = 1\ \Omega, so the correct option is (d).

Every real cell behaves like a perfect EMF source E\mathcal{E} in series with a small internal resistance rr. When no current flows (open circuit), the terminal voltage equals E\mathcal{E} — there’s no drop across rr. But the moment you draw current, rr steals some voltage: Vterminal=E−IrV_{\text{terminal}} = \mathcal{E} - I r. That’s the whole physics in one line.

Here, the open-circuit reading gives E=8 V\mathcal{E} = 8\ \text{V}. When 4 A4\ \text{A} is drawn, the terminal voltage crashes to 4 V4\ \text{V}. That 4 V4\ \text{V} loss is IrI r. So:

  1. Write the terminal voltage equation:

V=E−IrV = \mathcal{E} - I r

  1. Plug in the numbers:

4=8−(4)r4 = 8 - (4) r

  1. Solve for rr:

4r=8−4=4⇒r=1 Ω4r = 8 - 4 = 4 \quad\Rightarrow\quad r = 1\ \Omega

Watch out

A common mistake is to think the 4 V4\ \text{V} drop is the internal resistance voltage, but then forget to divide by the current. The drop is 4 V4\ \text{V}, and since Vdrop=IrV_{\text{drop}} = I r, we have r=4 V/4 A=1 Ωr = 4\ \text{V} / 4\ \text{A} = 1\ \Omega — not 4 Ω4\ \Omega or 2 Ω2\ \Omega.

Tip

You can also think: the internal resistance “eats” half the EMF when 4 A4\ \text{A} flows. That means rr must be such that Ir=4 VI r = 4\ \text{V}, so r=1 Ωr = 1\ \Omega. No algebra needed if you see the pattern.

✓Final answer

The internal resistance is 1 Ω\boxed{1\ \Omega}, which corresponds to option (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.