Skip to main content
Chapter 12 of 32
Important Questions

Wave Nature of Light: Hygens' Principle

ICSE · Class 12 · Physics

Most important questions from Wave Nature of Light: Hygens' Principle for ICSE Class 12 Physics board exam 2026. MCQs, short answer, and long answer questions with marks.

45 questions32 flashcards5 concepts

Interactive on Super Tutor

Studying Wave Nature of Light: Hygens' Principle? Get the full interactive chapter.

Quizzes, flashcards, AI doubt-solver and a step-by-step study plan — built for important questions and more.

1,000+ Class 12 students started this chapter today

45 Questions·
multiple choice

Sample Questions

1multiple choice
1 marks

According to Huygens' wave theory, how does the refractive index relate to the speed of light in two media? If light travels at 2.0 × 10⁸ m/s in medium 1 and 1.5 × 10⁸ m/s in medium 2, what is ₁n₂?

Show answer

₁n₂ = v₁/v₂ = 4/3 ≈ 1.33

Step 1: Huygens' principle proves that ₁n₂ = sin i / sin r = v₁/v₂ (speed in first medium / speed in second medium). Step 2: ₁n₂ = v₁/v₂ = (2.0 × 10⁸) / (1.5 × 10⁸) = 2.0/1.5 = 4/3 ≈ 1.33. Step 3: This value (≈1.33) is the refractive index of water with respect to a medium like dense glass — physically meaningful. Step 4: Wrong option B inverts the ratio (that would be ₂n₁). Wrong option D uses c instead of v₁, which would give the absolute refractive index of medium 1 with respect to vacuum, not between the two media.

2multiple choice
1 marks

In Huygens' construction for refraction, AB is a plane wavefront in medium 1 (speed v₁). After time t, edge B reaches point A' on the refracting surface. If the secondary wavelet from A in medium 2 has radius AB' = v₂t and BA' = v₁t, which triangle relationship correctly gives sin i?

Show answer

sin i = BA'/AA' from triangle BAA'

Step 1: In the Huygens' refraction diagram, AA' is the refracting surface. Triangle BAA' has BA' as the perpendicular from B to AA' (the incident wavefront is AB, so BA' ⊥ AA'). Step 2: The angle of incidence i is the angle between the incident ray (normal to AB) and the normal to SS'. In triangle BAA', angle BAA' = i, and sin(BAA') = BA'/AA'. Step 3: Similarly, in triangle AB'A', angle AA'B' = r, so sin r = AB'/AA'. Step 4: Dividing: sin i/sin r = BA'/AB' = v₁t/v₂t = v₁/v₂, giving Snell's law. Wrong option B gives sin r, not sin i. Wrong option C inverts the sine to give cosine-like ratio.

3multiple choice
1 marks

Light of frequency 6 × 10¹⁴ Hz travels from vacuum into a medium of refractive index 1.6. What is the speed of light in the medium? (c = 3 × 10⁸ m/s)

Show answer

1.875 × 10⁸ m/s

Step 1: The speed of light in a medium is v = c/n, where n is the refractive index. Step 2: v = (3 × 10⁸ m/s) / 1.6 = 1.875 × 10⁸ m/s. Step 3: Note that the frequency (6 × 10¹⁴ Hz) is irrelevant here — it is given as a distractor to test understanding that speed depends only on the medium (refractive index), not on frequency (in this context). Step 4: Wrong option B (4.8 × 10⁸) comes from multiplying c × n instead of dividing. Wrong option C (3.0 × 10⁸) ignores the medium. Wrong option D confuses n with the answer directly.

4multiple choice
1 marks

A plane wavefront is incident on a convex lens. What type of wavefront emerges from the lens, and why does the centre of the wavefront travel faster than the edges through the lens?

Show answer

Spherical converging wavefront; centre travels through thicker glass (slower), so edges emerge first making the wavefront converge

Step 1: A convex lens is thicker at the centre and thinner at the edges. Step 2: Speed of light in glass (v = c/n) is less than in air (n > 1). So light slows down more in thicker regions. Step 3: The central portion of the wavefront spends more time in glass (travels slower there), while the edges spend less time in glass. Step 4: As a result, the edges of the wavefront emerge from the lens before the centre, causing the wavefront to curve inward — forming a spherical converging wavefront. Wrong option B incorrectly states edges are thicker — in a convex lens the centre is thicker. Wrong opti

+41 more questions available

Practice All

Frequently Asked Questions

What are the important topics in Wave Nature of Light: Hygens' Principle for ICSE Class 12 Physics?
Key topics in Wave Nature of Light: Hygens' Principle include Wave Nature of Light: Huygens' Principle — Complete Chapter Mind Map, Wave Nature of Light: Chapter Overview, Wave Nature of Light: Huygens' Principle - Concept Hierarchy. These are the concepts ICSE Class 12 examiners draw on most — study them first, then practise related questions.
How to score full marks in Wave Nature of Light: Hygens' Principle — ICSE Class 12 Physics?
Understand the core concepts first, then work through the 45 practice questions available for this chapter. Revise formulas and definitions regularly, and use flashcards for quick recall before the exam.
How many important questions are there in Wave Nature of Light: Hygens' Principle?
There are 45 practice questions available for Wave Nature of Light: Hygens' Principle. These cover multiple question types including MCQs, short answer, and long answer questions.

Sources & Official References

Content is aligned to the official syllabus. Refer to the board website for the latest curriculum.

For serious students

Get the full Wave Nature of Light: Hygens' Principle chapter — for free.

Quizzes, flashcards, AI doubt-solver and a step-by-step study plan for ICSE Class 12 Physics.