Essential Concepts & Key Facts
High-yield conceptual summaries for competitive exams and rapid revision.
- A rainbow is an optical phenomenon produced by refraction, dispersion, and internal reflection in water drops.
- To observe a rainbow, the Sun must be behind the observer and rain or water droplets must be in front.
- The center of the rainbow's circular arc corresponds to the antisolar point, directly opposite the Sun.
- A rainbow is geometrically a complete circle, but the ground horizon cuts off the bottom half for ground observers.
- Passengers in airplanes or observers on high mountain peaks can occasionally view full 360-degree circular rainbows.
- Refraction occurs when sunlight enters a raindrop, slowing down and bending due to water's higher refractive index (~1.33).
- Dispersion splits white sunlight into the continuous spectrum of colors (VIBGYOR) because each color refracts at a unique angle.
- Violet light has the shortest visible wavelength and bends the most; red light has the longest wavelength and bends the least.
- Internal reflection occurs when dispersed light strikes the inner rear surface of the spherical raindrop.
- In a Primary Rainbow, light undergoes a single internal reflection before exiting the front of the droplet.
- Light from a primary rainbow emerges concentrated at an angle between 40 degrees (violet) and 42 degrees (red).
- In the primary rainbow, red appears on the outer top rim of the arc, while violet appears on the inner bottom rim.
- A Secondary Rainbow forms when sunlight undergoes two internal reflections inside the water droplets.
- The secondary rainbow appears higher in the sky, between 50 degrees (red) and 53 degrees (violet) from the antisolar point.
- In a secondary rainbow, the color sequence is inverted: violet appears on the outside and red on the inside.
- Secondary rainbows are noticeably fainter because light energy is lost during each of the two internal reflections.
- Alexander's dark band is the dark, unlit region of sky between the primary and secondary rainbows.
- Alexander of Aphrodisias first described this dark band between the two rainbow arcs around 200 AD.
- Supernumerary rainbows are faint, narrow pastel bands appearing just inside the primary arc, caused by wave interference.
- Moonbows (lunar rainbows) are rare rainbows formed by bright moonlight, often appearing white to human night vision.
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