Secondary 2 Science Theme: Models Ray Model of Light Notes 1 · 2018-07-30 · • Most objects do...

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2SS | Ray Model of Light | Notes 1 © JustEdu Holdings Pte Ltd -1- Light is a type of electromagnetic wave that carries energy. Light is a form of radiation. This means that a source of light such as the sun or light bulb gives off light rays that travel away from the light source in all directions. Since light is an electromagnetic wave, it does not need a material to travel through. Thus, light can travel through a vacuum. We are able to see the things around us only when light rays enter our eyes and stimulate light–sensitive cells (retinas) in our eyes. Anything that gives out light of their own is known as a light source and they are also known as luminous objects. We are able to see them because their emitted light rays enter our eyes. Light source can be natural or artificial sources. Examples of natural light sources include the Sun, stars, fireflies and glow worms. Examples of artificial light sources include light bulbs and fires. Most objects do not give off their own light and they are known as non-luminous objects. We are able to see them because the light rays falling onto them are reflected into our eyes. Examples include trees, humans, books. Sources of Light Light Secondary 2 Science Theme: Models Ray Model of Light Notes 1 Figure 2: Firefly Figure 1: Light rays travel away from the light source in all directions Brief introduction to the chapter, bridging concepts learnt in primary levels

Transcript of Secondary 2 Science Theme: Models Ray Model of Light Notes 1 · 2018-07-30 · • Most objects do...

Page 1: Secondary 2 Science Theme: Models Ray Model of Light Notes 1 · 2018-07-30 · • Most objects do not give off their own light and they areknown as non-luminous objects. − We are

2SS | Ray Model of Light | Notes 1 © JustEdu Holdings Pte Ltd

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• Light is a type of electromagnetic wave that

carries energy. • Light is a form of radiation. This means that a

source of light such as the sun or light bulb gives off light rays that travel away from the light source in all directions.

• Since light is an electromagnetic wave, it does not

need a material to travel through. • Thus, light can travel through a vacuum.

• We are able to see the things around us only when light rays enter our

eyes and stimulate light–sensitive cells (retinas) in our eyes. • Anything that gives out light of their own is known as a light source

and they are also known as luminous objects.

− We are able to see them because their emitted light rays enter our eyes.

− Light source can be natural or artificial sources.

− Examples of natural light sources include the Sun, stars, fireflies

and glow worms.

− Examples of artificial light sources include light bulbs and fires.

• Most objects do not give off their own light and they are known as non-luminous objects. − We are able to see them because the light rays falling onto them

are reflected into our eyes.

− Examples include trees, humans, books.

Sources of Light

Light

Secondary 2 Science Theme: Models Ray Model of Light Notes 1

Figure 2: Firefly

Figure 1: Light rays travel away from the light source in all directions

Brief introduction to the chapter, bridging concepts learnt in primary levels

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• The moon is a non-luminous object that reflects light from the sun.

• As the moon orbits around the earth, different parts of the moon reflect light from the sun.

• Hence, the shape of the moon changes at different periods of the month.

• Each different shape is called a phase.

• The shape of the moon that is observed from the earth depends on:

- the position of the moon relative to the sun and the earth;

- the amount of lit half of the moon facing the earth.

• Half of the moon faces the sun and is always lit while the other half of the moon faces away

from the sun and is always dark.

Phases of the Moon

Figure 10: Phases of the moon

Full moon New moon

Crescent moon

Crescent moon

First Quarter

Third Quarter

Gibbous moon

Gibbous moon

Comprehensive illustrations to capture student’s interest.

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Example 1 The diagram below shows a ray of light striking the mirror. Given that the total angle between the incident and reflected ray is 80o, what is the angle of incidence and angle of reflection?

Incident ray Reflected ray

80o

Examples are provided throughout the notes to check For students’ understanding of important concepts before proceeding on to the next concept.

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Example 2 The diagram below shows an object O and its image I formed in a plane mirror. Draw two light rays to show how an observer at A is able to see the image.

Object O Image O

RRaayyss DDiiaaggrraammss ffoorr aa ppooiinntt oobbjjeecctt • Step 1: Draw a perpendicular dotted line from the object O to the mirror and

extend the line behind the mirror. Locate the position of the image I such that object distance from

mirror is the same as image distance from mirror. • Step 2: Join the image I to the eye by drawing straight lines. Use solid lines for rays in front of the mirror and use dotted lines

to represent the virtual rays behind the mirror. • Step 3: Join the object to the points of incidence on the mirror surface.

Ensure that the arrowheads are drawn.

O I

O I

O I

Detailed step-by-step guide for students, leaving no room for doubts.

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Example 3 The diagram below shows a line XY. Complete and label clearly on the ray diagram below to show the position of the image X’Y’.

RRaayyss DDiiaaggrraammss ffoorr aann eexxtteennddeedd oobbjjeecctt • Step 1: Draw two perpendicular dotted lines from the line PQ to the mirror

and extend the line behind the mirror. Locate the position of the image P’Q’ such that object distance

from mirror is the same as image distance from mirror. • Step 2: Join the image P’Q’ to the eye by drawing straight lines. Use solid lines for rays in front of the mirror and use dotted lines

to represent the virtual rays behind the mirror. • Step 3: Join the line PQ to the points of incidence on the mirror surface.

Ensure that the arrowheads are drawn.

P P’

Q Q’

P P’

Q Q’

P P’

Q Q’

X

Y

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Describe light as a type of electromagnetic wave that carries energy Describe an object that gives out light of its own as luminous State that light travels in a straight line Describe reflection as the bouncing of light rays off the surface of a non-luminous

object State the laws of reflection Describe the differences between reflections on smooth and rough surfaces

State the properties of images formed by plane mirrors Describe some uses of plane mirrors

Describe some uses of concave and convex mirrors

Keywords Light Reflection Concave Electromagnetic wave Incident ray Radiation Reflected ray Luminous Laterally inverted Shadow Virtual Upright Convex

List of key words are provided in every set of notes to help students answer their examination questions accurately and precisely.

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Secondary 2 Science Theme: Models Ray Model of Light Exercise 1

A typical exercise will start with 5 to 15 multiple-choice questions. The first few questions will be more fundamental. The level of difficulty of questions will increase towards the end of each exercise. This is to allow students to grasp the basic concepts fully before applying the concepts to solve challenging questions.

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10. Which of the following is the reason that the girl in the diagram below can see the light from the torch?

(A) Light travels in a straight line. (B) Light undergoes reflection. (C) The cardboards are luminous.

(D) The cardboards are transparent. ( )

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Section B Structured Questions Write the answers in the spaces provided. 1. (a) Define reflection. (b) Name the two types of reflection.

(c) Is it easier to read from pages of a book that are rough or from pages that are

smooth and glossy? Explain your choice.

2. (a) In the space provided below, draw a diagram to show

(i) a converging beam of light. (ii) a diverging beam of light.

(b) Look at the ray diagram below. Label the rays shown.

(c) Deduce two laws of reflection from the above diagram.

(i)

(ii)

(i)

(ii)

plane mirror

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5. Complete the ray diagrams below to locate the position of the image formed by the plane mirror and how it can be viewed by an observer.

(a) (b) (c)

Q

Y

X

P