Karteikarten: Apparent Depth and Total Internal Reflection — 27 Karten

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1Frage

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

Antwort

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

2Frage

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

Antwort

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

3Frage

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

Antwort

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

4Frage

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

Antwort

The apparent depth is larger than the real depth.

5Frage

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

Antwort

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

6Frage

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

Antwort

n = real depth ÷ apparent depth.

7Frage

What is the refractive index of water used in the 24 cm container example?

Antwort

4/3.

8Frage

What is the real depth of water in a half-filled 24 cm container?

Antwort

12 cm.

9Frage

What is the apparent depth of water in a half-filled 24 cm container?

Antwort

9 cm.

10Frage

What equation relates real depth x and apparent depth in a 24 cm container to refractive index 4/3?

Antwort

4/3 = x ÷ (24 - x).

11Frage

What real depth makes a 24 cm container appear half-filled from air?

Antwort

Approximately 13.72 cm.

12Frage

What law and approximation lead to the apparent depth formula?

Antwort

Snell’s law and sinθ ≈ tanθ approximation.

13Frage

What ratio equals the refractive index in apparent depth calculation?

Antwort

n ÷ 1 = AO ÷ AI.

14Frage

What causes apparent displacement between an object and its image?

Antwort

Refraction at an interface causes apparent displacement.

15Frage

What is the formula for apparent displacement through a layer of thickness t and refractive index n?

Antwort

d = t(1 - 1/n)

16Frage

In a parallel-interface arrangement, how do displacement segments O₁I₁ and O₂I₂ compare?

Antwort

They are equal in length.

17Frage

What is the critical angle in optics?

Antwort

It is the incidence angle in the denser medium where the refracted ray travels along the interface at 90°.

18Frage

When does total internal reflection occur?

Antwort

When light goes from a denser to a rarer medium with incidence angle above the critical angle.

19Frage

What happens to the refracted angle as incidence angle approaches the critical angle?

Antwort

The refracted angle increases until the ray travels along the interface at 90°.

20Frage

What formula relates the critical angle to refractive indices n₁ and n₂?

Antwort

sin C = n₂ / n₁

21Frage

What is the critical angle formula when the rarer medium is air?

Antwort

sin C = 1 / n

22Frage

Which factors affect the critical angle for light?

Antwort

The denser medium, the rarer medium, and the light's colour

23Frage

Why is the glass–air critical angle about 42° for yellow light?

Antwort

Because sin C = 1 / (3/2) = 2/3

24Frage

What is the approximate water–air critical angle for yellow light?

Antwort

About 48°35′

25Frage

What formula gives the water–air critical angle as about 48°35′?

Antwort

sin C = 1 / (4/3) = 3/4

26Frage

What is the critical angle for the glass–water pair?

Antwort

Approximately 62°44′

27Frage

How is the glass–water critical angle calculated?

Antwort

sin C = (4/3) / (3/2) = 8/9

Teste dich mit dem Quiz

Teste dein Wissen mit 13 Fragen zu Apparent Depth and Total Internal Reflection.

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?

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