282823 The glass prisms \(P_1\) and \(P_2\) are to be combined together to produce dispersion without deviation. The angles of the prisms \(P_1\) and \(P_2\) are selected as \(4^{\circ}\) and \(3^{\circ}\) respectively. If the refractive index of prism \(P_1\) is 1.54 , then that of \(P_2\) will be
282823 The glass prisms \(P_1\) and \(P_2\) are to be combined together to produce dispersion without deviation. The angles of the prisms \(P_1\) and \(P_2\) are selected as \(4^{\circ}\) and \(3^{\circ}\) respectively. If the refractive index of prism \(P_1\) is 1.54 , then that of \(P_2\) will be
282823 The glass prisms \(P_1\) and \(P_2\) are to be combined together to produce dispersion without deviation. The angles of the prisms \(P_1\) and \(P_2\) are selected as \(4^{\circ}\) and \(3^{\circ}\) respectively. If the refractive index of prism \(P_1\) is 1.54 , then that of \(P_2\) will be
282823 The glass prisms \(P_1\) and \(P_2\) are to be combined together to produce dispersion without deviation. The angles of the prisms \(P_1\) and \(P_2\) are selected as \(4^{\circ}\) and \(3^{\circ}\) respectively. If the refractive index of prism \(P_1\) is 1.54 , then that of \(P_2\) will be