283063
A plane wave front is incident on a water surface at an angle of incidence \(60^{\circ}\) then it gets refracted \(45^{\circ}\). The ratio of width of incident wave front to that of refracted wave front will be
\(\left[\sin \frac{\pi}{4}=\cos \frac{\pi}{4}=\frac{1}{\sqrt{2}}, \sin 60^{\circ}=\frac{\sqrt{3}}{2}, \cos 60^{\circ}=\frac{1}{2}\right]\)
283063
A plane wave front is incident on a water surface at an angle of incidence \(60^{\circ}\) then it gets refracted \(45^{\circ}\). The ratio of width of incident wave front to that of refracted wave front will be
\(\left[\sin \frac{\pi}{4}=\cos \frac{\pi}{4}=\frac{1}{\sqrt{2}}, \sin 60^{\circ}=\frac{\sqrt{3}}{2}, \cos 60^{\circ}=\frac{1}{2}\right]\)
283063
A plane wave front is incident on a water surface at an angle of incidence \(60^{\circ}\) then it gets refracted \(45^{\circ}\). The ratio of width of incident wave front to that of refracted wave front will be
\(\left[\sin \frac{\pi}{4}=\cos \frac{\pi}{4}=\frac{1}{\sqrt{2}}, \sin 60^{\circ}=\frac{\sqrt{3}}{2}, \cos 60^{\circ}=\frac{1}{2}\right]\)
283063
A plane wave front is incident on a water surface at an angle of incidence \(60^{\circ}\) then it gets refracted \(45^{\circ}\). The ratio of width of incident wave front to that of refracted wave front will be
\(\left[\sin \frac{\pi}{4}=\cos \frac{\pi}{4}=\frac{1}{\sqrt{2}}, \sin 60^{\circ}=\frac{\sqrt{3}}{2}, \cos 60^{\circ}=\frac{1}{2}\right]\)
283063
A plane wave front is incident on a water surface at an angle of incidence \(60^{\circ}\) then it gets refracted \(45^{\circ}\). The ratio of width of incident wave front to that of refracted wave front will be
\(\left[\sin \frac{\pi}{4}=\cos \frac{\pi}{4}=\frac{1}{\sqrt{2}}, \sin 60^{\circ}=\frac{\sqrt{3}}{2}, \cos 60^{\circ}=\frac{1}{2}\right]\)