MCQ
A passenger in an aeroplane shall:
  • A
    Never see a rainbow.
  • May see a primary and a secondary rainbow as concentric circles.
  • C
    May see a primary and a secondary rainbow as concentric arcs.
  • D
    Shall never see a secondary rainbow.

Answer

Correct option: B.
May see a primary and a secondary rainbow as concentric circles.

As aeroplane is at higher altitude, the passenger in an aeroplane may see a primary and a secondary rainbow like concentric circles.
Key Concept:
If an object move with constant speed ($V_0$) towards a convex lens from infinity to focus, the image will move slower in the beginning and then faster. Also $\text{V}_\text{i}=\Big(\frac{\text{f}}{\text{f}+\text{u}}\Big)^2\text{V}_0$.
If an object approaches the lens, the image moves away from lens with a non$-$uniform acceleratiion.

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

A circular loop of area $0.01\,{m^2}$ carrying a current of $10\, A$, is held perpendicular to a magnetic field of intensity $0.1\,T$. The torque acting on the loop is......$N-m$
The radius of a circle is stated as $2.12\ cm$. Its area should be written as :
The process of radioactive radiations remains unaffected due to:
Which among the following is the source of the magnetic field $($magnetism$)?$
The value of plate current in the given circuit diagram will be...$mA$
A ray of light passes through an equilateral glass prism in such a manner that the angle of incidence is equal to the angle of emergence and each of these angles is equal to 3/4 of the angle of the prism. The angle of deviation is
Half lives of two radioactive substances $A$ and $B$ are respectively $20$ minutes and $40$ minutes. Initially the sample of $A$ and $B$ have equal number of nuclei. After $80$ minutes, the ratio of remaining number of $A$ and $B$ nuclei is
In the circuit shown in figure, four capacitors are connected to a battery. The equivalent capacitance of the circuit is......$ \mu F$
 A conducting circular loop is placed in a uniform magnetic field, $B = 0.025\,\, T$ with its plane perpenducular to the loop. The radius of the loop is made to shrink at at a constant rate of $1\,\,mm\,\,s^{-1}$ . The induced emf when the radius is $2\,\,cm$ is
If two light waves having same frequency have intensity ratio $4 : 1$ and they interfere, the ratio of maximum to minimum intensity in the pattern will be