Apparent Depth and Total Internal Reflection

Estratto della scheda di revisione

Course Outline

  1. Real and Apparent Depth
  2. Apparent Depth Calculations
  3. Apparent Displacement
  4. Critical Angle and TIR
  5. Critical-Angle Applications

1. Real and Apparent Depth

★ Must-know

📐 Formula — For perpendicular observation at a plane interface, the refractive-index ratio equals the ratio of real depth to apparent depth: ninr=real depthapparent depth\frac{n_i}{n_r}=\frac{\text{real depth}}{\text{apparent depth}}.

  • The real-depth/apparent-depth relation applies to plane surfaces, requires perpendicular observation, and in the stated simplified form requires the observing eye to be in air.

  • When an object in a denser medium is viewed from a rarer medium, its apparent depth is smaller and the virtual image appears closer to the interface; viewing from a denser medium toward a rarer medium gives a larger apparent depth.

Further detail

  • A ray from the real object O refracts at the interface and is traced backward by the eye to form a virtual image I at the apparent depth.

2. Apparent Depth Calculations

📐 Formula — When the rarer medium is air, the refractive index of the denser medium satisfies n=real depthapparent depthn=\frac{\text{real depth}}{\text{apparent depth}}.

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Anteprima del quiz

1. Light travels from a medium with refractive index n₁ to a rarer medium with refractive index n₂; which expression gives the critical angle C?

2. What is the critical angle for light traveling from a denser medium into a rarer medium?

3. For an object beneath a plane water–air interface viewed perpendicularly from air, how is refractive-index ratio related to real and apparent depth?

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Anteprima delle flashcard

What formula relates refractive-index ratio to depths at a plane interface?

The ratio of refractive indices equals real depth divided by apparent depth.

What conditions must hold for the real-depth/apparent-depth relation to apply?

It applies to plane surfaces with perpendicular observation and the eye in air.

How does apparent depth change when viewing from a rarer to a denser medium?

The apparent depth is smaller and the virtual image appears closer to the interface.

How does apparent depth change when viewing from a denser to a rarer medium?

The apparent depth is larger than the real depth.

How is the virtual image formed when viewing an object through a refracting interface?

The refracted ray is traced backward by the eye to form a virtual image at apparent depth.

What formula relates refractive index to real and apparent depth in air?

n = real depth ÷ apparent depth.

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Domande frequenti

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