Comprehensive Guide to Properties of Waves and Physical Optics

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Last updated 4:46 AM on 3/5/26
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45 Terms

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Electromagnetic (EM) radiation

Consists of oscillating electric and magnetic fields that propagate through space.

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Transverse Waves

Waves whose oscillations are perpendicular to the direction of wave propagation.

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Speed of Light (c)

All EM waves travel at this speed in a vacuum: c = 3.00 × 10^8 m/s.

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Wave Equation

The relationship between speed (v), frequency (f), and wavelength (λ): v = fλ.

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Energy of EM Waves

Energy is directly proportional to frequency: E = hf.

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Electromagnetic Spectrum

A range of EM radiation categorized by wavelength or frequency, including Radio Waves, Microwaves, Infrared, Visible Light, Ultraviolet, X-Rays, and Gamma Rays.

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Index of Refraction (n)

Defined as n = c/v, where c is the speed of light in vacuum and v is the speed in the medium.

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Superposition Principle

When two waves overlap, the resulting amplitude is the algebraic sum of the individual amplitudes.

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Constructive Interference

Occurs when crest meets crest (or trough meets trough), resulting in increased amplitude.

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Destructive Interference

Occurs when crest meets trough, resulting in decreased amplitude or cancellation.

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Path Length Difference (ΔL)

The difference in distance traveled by two waves arriving at a point.

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Condition for Constructive Interference (Maxima)

ΔL = mλ, where m = 0, 1, 2,… (the difference is a whole number of wavelengths).

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Condition for Destructive Interference (Minima)

ΔL = (m + 1/2)λ, where m = 0, 1, 2,… (the difference is a half-integer of wavelengths).

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Young's Double-Slit Experiment

An experiment demonstrating that light behaves as a wave, producing a pattern of bright and dark fringes.

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Path Difference Geometry

ΔL = d sin(θ), where d is the distance between the slits and θ is the angle from the center line.

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Location of Bright Fringes (Maxima)

d sin(θ) = mλ, where m is an integer.

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Location of Dark Fringes (Minima)

d sin(θ) = (m + 1/2)λ, where m is an integer.

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Small Angle Approximation

If L >> d, then sin(θ) ≈ tan(θ) ≈ y/L.

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Fringe spacing (y) relation

y_m ≈ (m λ L) / d, showing spacing between fringes is influenced by wavelength, slit separation, and screen distance.

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Diffraction Gratings

Devices with many slits that produce sharper and brighter maxima.

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Single Slit Diffraction

Interference caused by a single opening, producing a wider central maximum and dark spots.

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Minima formula for Single Slit

a sin(θ) = mλ, where a is the width of the slit and m is an integer for dark spots.

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Thin Film Interference

Interference resulting from light waves reflecting off the top and bottom surfaces of a thin film.

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Phase Shift for Hard Reflection

A 180° phase shift occurs when light reflects off a denser medium.

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Phase Shift for Soft Reflection

No phase shift occurs when light reflects off a less dense medium.

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Path length in Thin Films

Relative path length is 2t, where t is the thickness of the film.

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Constructive Interference for Thin Films (No Phase Shift)

2t = mλfilm, where λfilm is the wavelength inside the film.

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Destructive Interference for Thin Films (No Phase Shift)

2t = (m + 1/2)λ_film.

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Elastic Reflection (Phase Shift)

One phase shift when one side of the film reflects off a denser medium.

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Malus' Law

Describes how polarized light intensity changes when passing through a polarizer at angle θ: I = I_0 cos²(θ).

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Polarized Light

Light with electric field oscillations in a specific direction.

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Unpolarized Light

Light in which the electric field oscillates in random directions.

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Slit Width (a)

The width of the gap in a single slit diffraction setup.

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Slit Separation (d)

The distance between the centers of slits in a double slit experiment.

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Small Angle Condition

y = mλL/d is applicable only for small angles; otherwise use d sin(θ) = mλ.

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Frequency in Media Change

When light enters a medium, frequency remains constant while speed and wavelength change.

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Constructive vs Destructive Conditions

In double slit, m gives bright spots; in single slit, m gives dark spots.

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Crucial Step in Thin Films

Always calculate λfilm using λvacuum/n_film.

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Phase Shifts Count

Count phase shifts in reflection to determine formula for interference.

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Differences Between Interference Types

Single slit produces dark spots while double slit produces bright spots for integer m.

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Energy-Frequency Relationship

Higher frequency results in higher energy for EM waves.

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Electromagnetic Spectrum Order

The order by wavelength from longest to shortest: Radio, Microwave, Infrared, Visible Light, Ultraviolet, X-Rays, Gamma Rays.

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Constructive Condition for Thin Films

When there are 0 or 2 phase shifts, use 2t = mλ_film.

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Destructive Condition for Thin Films with Phase Shift

For 1 phase shift, use 2t = (m + 1/2)λ_film.

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Malus' Law for Polarizers

Intensity I after passing through a polarizer is I = I_0 cos²(θ).

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