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Q.Draw a ray diagram to show that a totally reflecting prism deviates a ray through 180°. OR Draw the ray diagram showing the formation of primary rainbow with the total internal reflection and refraction of a ray of light inside a water drop.

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2021Subjective· 1mImportance★★★★★
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Figure — Hard draw gate ('Draw a ray diagram to show that a totally reflecting prism deviates a ray through 180 degrees
Figure — Hard draw gate ('Draw a ray diagram to show that a totally reflecting prism deviates a ray through 180 degrees

Primary: a light ray entering a right-angle prism head-on hits the far face at exactly 45°, well past the critical angle, so it reflects internally and comes straight back the way it came. Alternative: sunlight bends into a raindrop, bounces once off its back, and bends again on exit — spreading into the rainbow's colours.

Primary — Totally reflecting prism, 180° deviation

Consider a right-angled isosceles prism (angles 45°45°-45°45°-90°90°) with a ray entering perpendicular to one of the two equal (shorter) faces, so it travels straight through undeviated to strike the hypotenuse face internally at 45°45°. Since 45°45° exceeds the critical angle of glass (≈42°\approx42°), the ray undergoes total internal reflection there, turning through 90°90°, and then exits perpendicular to the other short face, again undeviated. Overall, the ray's direction has been turned by 180°180° — it emerges travelling back antiparallel to how it entered.

Alternative (Or) — Primary rainbow ray diagram

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