367768
A narrow monochromatic beam of light of intensity \({I}\) is incident on a glass plate as shown in figure. Another identical glass plate is kept close to the first one and parallel to it. Each glass plate reflects \({25 \%}\) of the light incident on it and transmits the remaining. Find the ratio \(\sqrt {\frac{{{I_{\max }}}}{{{I_{\min }}}}} \) the interference pattern formed by two beams obtained after one reflection at each plate.
367768
A narrow monochromatic beam of light of intensity \({I}\) is incident on a glass plate as shown in figure. Another identical glass plate is kept close to the first one and parallel to it. Each glass plate reflects \({25 \%}\) of the light incident on it and transmits the remaining. Find the ratio \(\sqrt {\frac{{{I_{\max }}}}{{{I_{\min }}}}} \) the interference pattern formed by two beams obtained after one reflection at each plate.
367768
A narrow monochromatic beam of light of intensity \({I}\) is incident on a glass plate as shown in figure. Another identical glass plate is kept close to the first one and parallel to it. Each glass plate reflects \({25 \%}\) of the light incident on it and transmits the remaining. Find the ratio \(\sqrt {\frac{{{I_{\max }}}}{{{I_{\min }}}}} \) the interference pattern formed by two beams obtained after one reflection at each plate.
367768
A narrow monochromatic beam of light of intensity \({I}\) is incident on a glass plate as shown in figure. Another identical glass plate is kept close to the first one and parallel to it. Each glass plate reflects \({25 \%}\) of the light incident on it and transmits the remaining. Find the ratio \(\sqrt {\frac{{{I_{\max }}}}{{{I_{\min }}}}} \) the interference pattern formed by two beams obtained after one reflection at each plate.