Skip to main content
Chapter 14 of 32
Practice Quiz

Interference of Light — Practice Quiz

ICSE · Class 12 · Physics

Try a 4-question quiz on Interference of Light for ICSE Class 12 Physics: tap an answer to check it and see why. 45 questions in the full chapter test.

45 questions34 flashcards12 formulas & key relations5 concepts

Interactive on Super Tutor

Studying Interference of Light? Get the full interactive chapter.

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

Free trial, no card needed.

Quick Quiz: Interference of Light

0/4

Tap an answer to check it instantly. No sign-up needed for these 4.

1

In Young's double-slit experiment, the slit separation is 0.5 mm and the screen is placed 1.0 m away. If the fringe width observed is 1.2 mm, what is the wavelength of light used?

2

Two coherent light sources have intensity ratio 4:1. What is the ratio of maximum intensity to minimum intensity in the interference pattern?

3

In Young's double-slit experiment, monochromatic light of wavelength 500 nm is used. The slit separation is 1 mm and the screen is 2 m away. What is the distance of the 4th bright fringe from the central maximum?

4

Which of the following is the correct condition for destructive interference in terms of path difference (x), where m = 1, 2, 3...?

45 Questions·
multiple choice

Sample Questions

1multiple choice
1 marks

In Young's double-slit experiment, the entire apparatus is immersed in water (refractive index = 4/3). If the fringe width in air was 1.2 mm, what is the new fringe width in water?

Show answer

0.9 mm

Step 1: Fringe width β = Dλ/d. When the apparatus is immersed in a medium of refractive index n, the wavelength changes: λ_medium = λ_air / n. Step 2: New fringe width β' = Dλ_medium/d = β/n. Step 3: β' = 1.2 mm / (4/3) = 1.2 × (3/4) = 0.9 mm. Option A (1.6 mm) is incorrect – immersing in water decreases the wavelength, so fringe width decreases, not increases. Option D (0.6 mm) would correspond to n = 2.

2multiple choice
1 marks

Two independent sodium lamps are placed near each other. An observer looks at them simultaneously. Which of the following best explains why no interference pattern is observed?

Show answer

The two lamps are incoherent – their phase difference changes randomly and continuously.

Step 1: For sustained interference, two sources must be coherent – they must maintain a constant phase difference over time. Step 2: Independent sources consist of billions of atoms emitting light randomly; each atom emits for only ~10⁻⁸ s and then stops, so the phase relationship between two lamps changes billions of times per second. Step 3: Because the phase difference fluctuates randomly, the positions of bright and dark fringes shift so rapidly that the eye (due to persistence of vision) perceives uniform illumination – no fringes are visible. Option A is incorrect because sodium lamps em

3multiple choice
1 marks

In Young's double-slit experiment, the distance between slits is 0.28 mm and the screen is 1.4 m away. The 4th bright fringe is at 1.2 cm from the centre. What is the wavelength of light used?

Show answer

600 nm

Step 1: Use x_m = mDλ/d, so λ = x_m × d / (m × D). Step 2: Given: x₄ = 1.2 cm = 1.2 × 10⁻² m, d = 0.28 mm = 0.28 × 10⁻³ m, D = 1.4 m, m = 4. Step 3: λ = (1.2 × 10⁻² × 0.28 × 10⁻³) / (4 × 1.4) = (3.36 × 10⁻⁶) / 5.6 = 6 × 10⁻⁷ m. Step 4: λ = 600 nm. This is a standard NCERT problem. Options A, B, D result from arithmetic errors in the calculation.

4multiple choice
1 marks

The fringe width in Young's double-slit experiment is β. If the screen is moved closer to the slits by a distance ΔD (keeping everything else constant), the change in fringe width is Δβ. Which relationship is correct?

Show answer

Δβ = λ·ΔD / d

Step 1: Fringe width β = Dλ/d. Step 2: Since λ and d are constant, any change in D directly causes a proportional change in β: Δβ = λ·ΔD / d. Step 3: This follows because β is directly proportional to D. Step 4: This result is used in ISC problems where the screen is moved and the change in fringe width is measured to find λ. Options B, C, D have incorrect arrangements of variables and do not follow from the formula.

+41 more questions on Interference of Light (ICSE Class 12 Physics)

Practise All

Frequently Asked Questions

What are the important topics in Interference of Light for ICSE Class 12 Physics?
Key topics in Interference of Light include Principle of Superposition and Interference, Young's Double-Slit Experiment, Conditions for Bright and Dark Fringes, Fringe Width, Intensity, and Energy Conservation. Study these first, then practise questions on each for the ICSE Class 12 board exam.
How many practice questions are there for Interference of Light?
There are 45 questions on Interference of Light. Try the 4-question sample quiz on this page first; each answer shows an explanation when you tap it.

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 Interference of Light chapter — start free.

Quizzes, flashcards, an AI doubt solver and a study plan for ICSE Class 12 Physics. Free to start, no card needed.