283461 A thin film of soap solution \(\left(\mu_{\mathrm{s}}=1.4\right)\) lies on the top of a glass plate \(\left(\mu_{\mathrm{g}}=1.5\right)\). When visible light is incident almost normal to the plate, two adjacent reflection maxima are observed at two wavelengths \(420 \mathrm{~nm}\) and \(630 \mathrm{~nm}\). The minimum thickness of the soap solution are-
283461 A thin film of soap solution \(\left(\mu_{\mathrm{s}}=1.4\right)\) lies on the top of a glass plate \(\left(\mu_{\mathrm{g}}=1.5\right)\). When visible light is incident almost normal to the plate, two adjacent reflection maxima are observed at two wavelengths \(420 \mathrm{~nm}\) and \(630 \mathrm{~nm}\). The minimum thickness of the soap solution are-
283461 A thin film of soap solution \(\left(\mu_{\mathrm{s}}=1.4\right)\) lies on the top of a glass plate \(\left(\mu_{\mathrm{g}}=1.5\right)\). When visible light is incident almost normal to the plate, two adjacent reflection maxima are observed at two wavelengths \(420 \mathrm{~nm}\) and \(630 \mathrm{~nm}\). The minimum thickness of the soap solution are-
283461 A thin film of soap solution \(\left(\mu_{\mathrm{s}}=1.4\right)\) lies on the top of a glass plate \(\left(\mu_{\mathrm{g}}=1.5\right)\). When visible light is incident almost normal to the plate, two adjacent reflection maxima are observed at two wavelengths \(420 \mathrm{~nm}\) and \(630 \mathrm{~nm}\). The minimum thickness of the soap solution are-
283461 A thin film of soap solution \(\left(\mu_{\mathrm{s}}=1.4\right)\) lies on the top of a glass plate \(\left(\mu_{\mathrm{g}}=1.5\right)\). When visible light is incident almost normal to the plate, two adjacent reflection maxima are observed at two wavelengths \(420 \mathrm{~nm}\) and \(630 \mathrm{~nm}\). The minimum thickness of the soap solution are-