355145 Two vibrating strings of same length, same cross section area and stretched to same tension is made of materials with densities \(\rho\) and \(2 \rho\). Each string is fixed at both ends. If \(f_{1}\) represents the fundamental mode of vibration of the one made with density \(\rho\) and \(f_{2}\) for another, then \(f_{1} / f_{2}\) is
355145 Two vibrating strings of same length, same cross section area and stretched to same tension is made of materials with densities \(\rho\) and \(2 \rho\). Each string is fixed at both ends. If \(f_{1}\) represents the fundamental mode of vibration of the one made with density \(\rho\) and \(f_{2}\) for another, then \(f_{1} / f_{2}\) is
355145 Two vibrating strings of same length, same cross section area and stretched to same tension is made of materials with densities \(\rho\) and \(2 \rho\). Each string is fixed at both ends. If \(f_{1}\) represents the fundamental mode of vibration of the one made with density \(\rho\) and \(f_{2}\) for another, then \(f_{1} / f_{2}\) is
355145 Two vibrating strings of same length, same cross section area and stretched to same tension is made of materials with densities \(\rho\) and \(2 \rho\). Each string is fixed at both ends. If \(f_{1}\) represents the fundamental mode of vibration of the one made with density \(\rho\) and \(f_{2}\) for another, then \(f_{1} / f_{2}\) is