Light

1. Nature of Light

Light is a form of ENERGY that enables us to SEE objects.

Key Properties

  • Light travels in STRAIGHT LINES (rectilinear propagation).
  • Speed of light in vacuum = 3 × 10⁸ m/s.
  • Light travels MUCH faster than sound.

Luminous and Non-Luminous Objects

TypeDefinitionExamples
LuminousProduce their own lightSun, stars, bulb, candle
Non-luminousReflect light from other sourcesMoon, table, book, person

2. Reflection of Light

REFLECTION is the bouncing back of light when it strikes a smooth surface.

Laws of Reflection

  1. The INCIDENT ray, the REFLECTED ray, and the NORMAL all lie in the SAME plane.
  2. The ANGLE OF INCIDENCE (∠i) is ALWAYS EQUAL to the ANGLE OF REFLECTION (∠r).

Terms

TermMeaning
Incident rayLight ray that strikes the surface
Reflected rayLight ray that bounces off
NormalImaginary line perpendicular to the surface at the point of incidence
Angle of incidenceAngle between incident ray and normal
Angle of reflectionAngle between reflected ray and normal

Types of Reflection

TypeSurfaceExample
Regular/SpecularSmooth surfaceMirror, still water
Diffuse/IrregularRough surfaceWall, paper, cloth

3. Plane Mirror

A PLANE MIRROR is a flat, smooth surface that reflects light regularly.

Image Formation by a Plane Mirror

  • The image is VIRTUAL (cannot be obtained on a screen).
  • The image is ERECT (same orientation as object).
  • The image is the SAME SIZE as the object.
  • The image is LATERALLY INVERTED (left and right swapped).
  • The DISTANCE of the image BEHIND the mirror equals the DISTANCE of the object IN FRONT of the mirror.

Worked Example (ICSE 2024, 2 marks)

'A person stands 2 m in front of a plane mirror. Where is the image located?'

Solution: The image is 2 m BEHIND the mirror. So the person is 4 m away from their own image.


4. Spherical Mirrors

A SPHERICAL MIRROR is a mirror whose reflecting surface is part of a SPHERE.

Types

TypeShapeReflecting Surface
Concave mirrorCurved INWARDInside of the sphere
Convex mirrorCurved OUTWARDOutside of the sphere

Key Terms for Spherical Mirrors

TermMeaning
Centre of curvature (C)Centre of the sphere of which the mirror is a part
Pole (P)Centre point of the mirror
Principal axisLine joining P and C
Focus (F)Point where parallel rays converge (or appear to diverge from)
Focal length (f)Distance from P to F. f = R/2

5. Concave Mirror

Image Formation

Position of ObjectPosition of ImageNatureSizeUse
At infinityAt FReal, invertedVery small
Beyond CBetween C and FReal, invertedDiminished
At CAt CReal, invertedSame size
Between C and FBeyond CReal, invertedEnlarged
At FAt infinityReal, invertedHighly enlarged
Between F and PBehind mirrorVIRTUAL, ERECTEnlargedShaving mirror, dentist

Uses of Concave Mirrors

  • Shaving mirrors (enlarged virtual image).
  • Dentist's mirror (enlarged view of teeth).
  • Solar concentrators (focus sunlight to a point).
  • Headlights and torches (diverging beam from focus).

6. Convex Mirror

Image Formation (ALWAYS virtual, erect, and diminished)

Position of ObjectPosition of ImageNatureUse
AnywhereBetween P and F, behind mirrorVirtual, erect, diminishedRear-view mirror

Uses of Convex Mirrors

  • Rear-view mirrors in vehicles (gives a wider field of view).
  • Security mirrors in shops.
  • At road intersections to see around corners.

Comparison: Concave vs Convex

FeatureConcaveConvex
ShapeCurved inwardCurved outward
Image typeReal or virtualAlways virtual
Image sizeDiminished / Same / EnlargedAlways diminished
Field of viewNarrowerWider

7. Real vs Virtual Images

FeatureReal ImageVirtual Image
Can be obtained on screenYESNO
Formed byActual intersection of raysApparent intersection
NatureUsually invertedUsually erect
Mirrors that formConcavePlane, Convex (and Concave in some cases)

8. ICSE Exam Focus

TopicMarksFrequency
Laws of reflection2 marksVery High
Plane mirror properties2-3 marksVery High
Concave mirror uses and ray diagrams3 marksHigh
Convex mirror uses2 marksHigh
Real vs virtual images2 marksMedium

Common Mistakes

  1. Saying plane mirror image is REAL — it is VIRTUAL (cannot be obtained on screen).
  2. Confusing concave and convex — concave is 'cave' (curving inward).
  3. Forgetting that convex mirror always gives diminished images.
  4. Drawing ray diagrams incorrectly (wrong angle or wrong path).

Self-Test (5 Questions)

Q1. Which mirror is used as a rear-view mirror in cars? (1 mark)

  • A) Plane mirror
  • B) Concave mirror
  • C) Convex mirror
  • D) All of these

Q2. State the second law of reflection. (2 marks)

Q3. 'What type of image does a plane mirror form?' (1 mark)

Q4. 'A concave mirror forms a real, inverted, enlarged image. Where is the object placed?' (2 marks)

Q5. 'An object is placed 10 cm in front of a plane mirror. How far is the image from the object?' (2 marks)

Answers

A1. C) Convex mirror (gives wider field of view). A2. The angle of incidence is EQUAL to the angle of reflection (∠i = ∠r). A3. Virtual, erect, same size, laterally inverted. A4. Between C and F (centre of curvature and focus). A5. 20 cm. (Image is 10 cm behind the mirror. Distance from object to image = 10 + 10 = 20 cm.)

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