Frequency of vibration
\(\mathrm{n}=\frac{\mathrm{p}}{2 l} \sqrt{\frac{\mathrm{T}}{\pi \mathrm{r}^{2} \rho}}\)
As \(\mathrm{T}, \mathrm{r},\) and \(l\) are same for both the wires
\(n_{1}=n_{2}\)
\(\frac{p_{1}}{\sqrt{\rho_{1}}}=\frac{p_{2}}{\sqrt{p_{2}}}\)
\(\frac{p_{1}}{p_{2}}=\frac{1}{2} \quad \because \rho_{2}=4 \rho_{1}\)