Fundamentals of Wave Optics and Cosmology

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📋 Course Outline

  1. Travelling waves and wave speed relations
  2. Reflection and refraction of plane waves
  3. Lenses, ray diagrams and image formation
  4. Electromagnetic spectrum and cosmology basics
  5. Solar system, stars and stellar evolution
  6. Total internal reflection and optical instruments
  7. Forces, motion, momentum and impulse
  8. Magnetism and electromagnetism
  9. Electric circuits, transformers and rectification

📖 1. Travelling waves and wave speed relations

🔑 Key Concepts & Definitions

  • Travelling wave : A travelling wave is a disturbance that propagates through space, carrying energy and momentum without transporting matter overall.
  • Transverse wave : A transverse wave is a wave where particle displacement is perpendicular to the direction of propagation.
  • Longitudinal wave : A longitudinal wave is a wave where particle displacement is parallel to the direction of propagation.
  • Wavelength : Wavelength is the spatial period, measured as the distance between two successive points in phase.
  • Frequency : Frequency is the number of oscillations per second, measured in hertz (Hz).

📝 Essential Points

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Prévia do quiz

1. What does the relation v = fbb describe for a travelling wave?

2. In a fixed medium where wave speed stays constant, what happens to the wavelength if the frequency increases?

3. What remains unchanged when a plane wave reflects from a boundary?

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Prévia dos flashcards

Travelling wave — definition?

A disturbance propagating energy without matter transport.

Wave speed relation?

v = f λ, relates speed, frequency, wavelength.

Transverse wave — displacement?

Displacement is perpendicular to propagation direction.

Longitudinal wave — displacement?

Displacement is parallel to propagation direction.

Wavefronts — purpose?

Visualize wave propagation and phase.

Reflection — wave property?

Wave bounces, angle of incidence equals angle of reflection.

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