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 \(\Omega\).