Question:medium

In the following figure, the equivalent resistance between ‘A’ and ‘B’ will be
equivalent resistance between ‘A’ and ‘B’

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When resistors are in series, add their resistances, and when in parallel, use the formula \(\frac{1}{R_{\text{eq}}} = \frac{1}{R_1} + \frac{1}{R_2}\).
Updated On: Jan 15, 2026
  • 12 \(\Omega\)
  • 5 \(\Omega\)
  • 2.25 \(\Omega\)
  • 1.2 \(\Omega\)
Show Solution

The Correct Option is B

Solution and Explanation

The 3 \(\Omega\) and 6 \(\Omega\) resistors are in series, resulting in a total resistance of: \[\nR_{\text{total}} = 3 \, \Omega + 6 \, \Omega = 9 \, \Omega\] This 9 \(\Omega\) series combination is in parallel with a 3 \(\Omega\) resistor: \[\nR_{\text{eq}} = \frac{9 \times 3}{9 + 3} = \frac{27}{12} = 2.25 \, \Omega\] Therefore, the answer is 2.25 \(\Omega\).
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