MCQ
Polarization of light confirms :
  • A
    Longitudinal wave nature of light
  • B
    Transverse wave nature of light
  • C
    The particle nature of light
  • D
    Quantum nature of light

Answer

B - Transverse wave nature of light

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Two wires A and B are made of same material. The wore A has a length l and diameter r while the wire B has a length 2l and diameter $\frac{\text{r}}{2}$. If the two wires are stretched by the same force, the elongation in A divided by the elongation in 8 is:
If the capacitors having capacitance $C _1$ and $C _2$ are connected in series then their resultant capacitance is given by:
A body of capacity $4\,\mu \,F$ is charged to $80\,V$ and another body of capacity $6\,\mu \,F$ is charged to $30\,V$. When they are connected the energy lost by $4\,\mu \,F$ capacitor is.......$mJ$
Given below are two statements :

Statement $I:$ If the Brewster's angle for the light propagating from air to glass is $\theta_{ B }$, then Brewster's angle for the light propagating from glass to air is $\frac{\pi}{2}-\theta_B$.

Statement $II:$ The Brewster's angle for the light propagating from glass to air is $\tan ^{-1}\left(\mu_{ g }\right)$ where $\mu_{ g }$ is the refractive index of glass.

In the light of the above statements, choose the correct answer from the options given below :

A diode having potential difference $0.5\,V$ across its junction which does not depend on  current, is connected in series with resistance of $20\,\Omega $ across source. If $0.1\, A$ passes through resistance then what is the voltage of the source.....$V$
Which logic gate is represented by following diagram
A student wants to find if a star if moving away from the earth or towards the earth. Which of the following principle he can use?
Radon $({R_n})$ decays into Polonium (${P_0}$) by emitting an $\alpha - $ particle with half-life of $4\, days$. A sample contains $6.4 \times {10^{10}}$ atoms of $R_n$. After $12\, days$, the number of atoms of ${R_n}$ left in the sample will be
In an $ac$ circuit the reactance of a coil is $\sqrt 3 $ times its resistance, the phase difference between the voltage across the coil to the current through the coil will be
The maximum value of stopping potential in the following diagram is