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Physics Revision Guides

P2: Waves, Optics and Superposition

Year 1 / ASYear 2 / A-Level All Boards (AQA, Edexcel, OCR, WJEC, CCEA) AQA

Progressive and stationary waves, Young's double-slit experiment, diffraction gratings, refractive index, total internal reflection.

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📋 Key Definitions and Core Concepts

Superposition Principle: When two waves meet, the resultant displacement is the vector sum of individual displacements.
Coherence: Waves with constant phase difference and identical frequency/wavelength.

🔍 Key Principles & Specification Requirements

  • Double slit fringe spacing: w = λD / s (fringe separation w, slit spacing s, screen distance D).
  • Diffraction grating equation: d sin θ = nλ (d = grating spacing = 1/N lines per metre).
  • Snell's law: n₁ sin θ₁ = n₂ sin θ₂; Critical angle sin θ_c = n₂ / n₁ (for n₁ > n₂).

💡 Worked Example Question

Exam-Style Question

Question:

Laser light (λ = 632.8 nm) is incident on a grating with 300 lines/mm. Find angle of 2nd order maximum.

Model Solution & Mark Scheme:

d = 1 / (300 × 10³) = 3.333 × 10⁻⁶ m.
d sin θ = nλ => sin θ = (2 × 632.8 × 10⁻⁹) / (3.333 × 10⁻⁶) = 0.3797.
θ = arcsin(0.3797) = 22.3°.

❓ Practice Questions & Mark Schemes

Q1: Explain how stationary waves are formed on a stretched string.

Show Model Answer

Answer: Two identical progressive waves travelling in opposite directions with equal frequency and amplitude superpose, creating nodes (zero displacement) and antinodes (maximum displacement).

Q2: Calculate critical angle for glass (n = 1.52) to air (n = 1.00).

Show Model Answer

Answer: sin θ_c = 1.00 / 1.52 = 0.6579 => θ_c = 41.1°.

🎬 Video Resources

📄 Past Papers & Exam Resources

🔗 Further Reading & Resources

🎓 Smart Lesson (Guided)