The critical angle (\(C\)) for total internal reflection is given by the relation:
\[ \sin C = \frac{1}{\mu} \]
where \( \mu \) is the refractive index of the denser medium relative to the rarer medium.
Important: Refractive index (\(\mu\)) varies with wavelength (colour) due to dispersion. For visible light, the refractive index is highest for violet (shortest wavelength) and lowest for red (longest wavelength).
Step-by-Step Logic:
\[ \sin C = \frac{1}{\mu} \]
Therefore, among visible colours, red will have the smallest refractive index, and thus the maximum critical angle.
The critical angle \( \theta_c \) for a pair of transparent media is given by the equation: \[ \sin \theta_c = \frac{n_2}{n_1} \] where:
\( n_1 \) is the refractive index of the denser medium,
\( n_2 \) is the refractive index of the rarer medium.
The critical angle depends on the refractive index of the medium. The refractive index decreases as the wavelength of light increases. Since red light has the longest wavelength and thus the smallest refractive index among the visible spectrum, the critical angle is the largest for red light.
Therefore, the critical angle for red light is maximum.
Match the following types of nuclei with examples shown: 
Charges are uniformly spread on the surface of a conducting sphere. The electric field from the center of the sphere in a point outside the sphere varies with distance \( r \) from the center as 
The power of equi - concave lens is - 4.5 D and is made of a material R.I. 1.6, the radii of the curvature of the lens is
Match the following:
In the following, \( [x] \) denotes the greatest integer less than or equal to \( x \). 
Choose the correct answer from the options given below:
For x < 0:
f(x) = ex + ax
For x ≥ 0:
f(x) = b(x - 1)2