Rankers Physics

Total Internal Reflection: Practice Problem & Solution

A ray of light travelling in a transparent medium of refractive index $\mu$, falls on a surface separating the medium from air at an angle of incidence of $45^\circ$. For which of the following value of $\mu$ the ray can undergo total internal reflection? (2010 Pre)
$\mu = 1.25$
$\mu = 1.33$
$\mu = 1.40$
$\mu = 1.50$

Solution Explained:

To solve this problem, we apply the core principles of Total Internal Reflection. Understanding the underlying formula is key to arriving at the correct answer below:

For total internal reflection, the incidence angle must be greater than the critical angle, so $\sin i > \sin \theta_c = \frac{1}{\mu}$. Given $i = 45^\circ$, we have $\frac{1}{\sqrt{2}} > \frac{1}{\mu} \implies \mu > \sqrt{2} \approx 1.414$. Among the options, only $\mu = 1.50$ satisfies this.

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