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Reflection of Light ( Form 3, Physics)
 

Reflection of Light ( Form 3, Physics)Online version

Test your understanding of light reflection laws!

by YAKILI LMS
1

The angle of incidence is measured between the incident ray and the normal line.

2

The normal line is drawn parallel to the reflecting surface at the point of incidence.

3

The normal line is an imaginary line perpendicular to the reflecting surface at the point of incidence.

4

The second law of reflection states that the angle of reflection is twice the angle of incidence.

5

The first law of reflection states that the angle of incidence equals the angle of reflection.

6

The law of reflection only applies to convex mirrors.

7

In the law of reflection, the incident ray, reflected ray, and the normal all lie in the same plane.

8

Reflected rays always bend away from the normal line.

9

The law of reflection applies to smooth and polished surfaces like mirrors.

10

In reflection, the incident ray and the reflected ray are always perpendicular to each other.

11

Ray diagrams are not necessary to determine the image position in a plane mirror.

12

In a plane mirror, the image appears to be behind the mirror.

13

The distance from the mirror to the object is equal to the distance from the mirror to the image.

14

The image formed by a plane mirror is always magnified.

15

The image in a plane mirror is real and inverted.

16

The image formed by a plane mirror is virtual and upright.

17

In ray diagrams, the reflected rays always pass through the actual image point.

18

Ray diagrams help in locating the position of the image in a plane mirror.

19

According to the law of reflection, the angle at which the incident ray strikes a surface is equal to the angle at which the reflected ray leaves it.

20

The size of the image in a plane mirror is always larger than the object.

21

Light travels in straight lines through the pinhole to form an image.

22

The size of the pinhole affects the sharpness of the image.

23

Pinhole cameras cannot be used to take photographs.

24

The camera obscura is an early example of a pinhole camera.

25

You need a lens to focus light in a pinhole camera.

26

Pinhole cameras can only be made with metal boxes.

27

The image in a pinhole camera is always upside down.

28

A larger pinhole always produces a sharper image than a smaller one.

29

A pinhole camera does not require a lens to form an image.

30

A pinhole camera uses a tiny hole to project an image.

31

Mirrors in vehicles help drivers see behind them.

32

Plane mirrors can magnify objects like microscopes do.

33

Plane mirrors are used in telescopes to observe distant stars.

34

Mirrors in cameras are always curved, not flat.

35

Shaving mirrors are a type of plane mirror used for grooming.

36

Plane mirrors are used in optical instruments like periscopes.

37

Plane mirrors produce virtual images that are upright.

38

Plane mirrors are used in household bathrooms for reflection.

39

Plane mirrors can change the size of the reflected image.

40

Plane mirrors can be used to focus sunlight to generate heat.

41

Convex mirrors can be used to focus sunlight to start a fire.

42

Convex mirrors are used in vehicle side mirrors for a wider view.

43

Convex mirrors are used in telescopes to focus distant objects.

44

Concave mirrors can magnify objects when used correctly.

45

Curved mirrors help in making headlights more effective in cars.

46

Concave mirrors are mainly used in street lighting to spread light evenly.

47

Curved mirrors are not used in any household appliances.

48

Convex mirrors produce virtual and upright images.

49

Concave mirrors are only used in microscopes and not in everyday objects.

50

Concave mirrors are used in shaving mirrors to focus light on the face.

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