Looking for reliable SEBA Class 10 Science Chapter 10 (Light – Reflection and Refraction) extra questions and answers for the 2026–27 academic year? Access essential numerical practice problems, mirror and lens formula practice sets, ray diagram construction questions, refractive index numericals, and conceptual physics notes to score top marks in your HSLC board exams.

 EXTRA QUESTION AND ANSWER

Q1. Define light and explain why we cannot see objects in the dark.

Ans.

Light is a form of energy that enables us to see objects. We can see an object only when light reflected from its surface enters our eyes. In darkness, no light is available for reflection, so objects cannot be seen.

Q2. State two properties of light.

Ans.

  1. Light travels in a straight line (rectilinear propagation).
  2. Light can be reflected and refracted when it strikes surfaces or enters different media.

Q3. What is reflection of light? State its laws.

Ans.

Reflection is the bouncing back of light when it strikes a polished surface like a mirror.

Laws of Reflection:

  1. The angle of incidence (∠i) is equal to the angle of reflection (∠r).
  2. The incident ray, the reflected ray, and the normal at the point of incidence all lie in the same plane.

Q4. What type of image is formed by a plane mirror?

Ans.

The image formed by a plane mirror is:

Q5. Distinguish between concave and convex mirrors.

Ans.

FeatureConcave MirrorConvex Mirror
Reflecting SurfaceCurved inwardCurved outward
Action on LightConverges light raysDiverges light rays
Image FormedReal and inverted (Virtual and erect when object is between P and F)Always virtual, erect, and diminished
Common UsesTorches, dentist mirrors, shaving mirrorsRear-view mirrors in vehicles

SEBA Class 10 Science Chapter 10 Extra Questions

Q6. Define pole, centre of curvature, and principal axis.

Ans.

Q7. What is the relation between focal length and radius of curvature?

Ans.

The focal length (f) of a spherical mirror is equal to half of its radius of curvature (R):

R = 2f (or f = R / 2)

Q8. What kind of image does a concave mirror form when the object is placed between focus (F) and pole (P)?

Ans.

The image formed is virtual, erect, enlarged, and appears behind the mirror (e.g., as used in a shaving mirror).

Q9. State two uses of concave mirrors.

Ans.

  1. Used in torches, searchlights, and vehicle headlights to produce powerful parallel beams of light.
  2. Used by dentists and as shaving mirrors to see an enlarged image of the object.

Q10. What type of image is formed by a convex mirror? Give one use.

Ans.

A convex mirror always forms a virtual, erect, and diminished image.

Use: It is used as a rear-view mirror in vehicles because it provides a wider field of view to the driver.

Class 10 Science Chapter 10 Important Questions SEBA 2026-27

Q11. State the mirror formula and define each term.

Ans.

The mirror formula is:

1/f = 1/v + 1/u

Where:

Q12. Define magnification for mirrors and give its formula.

Ans.

Magnification (m) is the ratio of the height of the image to the height of the object.

m = height of image / height of object = -v / u

Q13. What is refraction of light? Give one example.

Ans.

Refraction is the bending of light when it passes obliquely from one transparent medium to another due to a change in its speed.

Example: A pencil partially immersed in water appears bent at the water surface.

Q14. State the laws of refraction (Snell’s laws).

Ans.

  1. The incident ray, the refracted ray, and the normal to the interface at the point of incidence all lie in the same plane.
  2. The ratio of the sine of the angle of incidence to the sine of the angle of refraction is constant for a given pair of media:
    sin i / sin r = constant (Snell’s Law)

Q15. Define refractive index.

Ans.

Refractive index (n) of a medium is the ratio of the speed of light in vacuum (or air) to the speed of light in that medium:

n = c / v

It indicates the degree of bending or optical density of a medium.

Light Reflection and Refraction Class 10 SEBA Extra Question Answer


Q16. What is optical density?

Ans.

Optical density measures how much a medium slows down light. A medium with a higher refractive index is optically denser. Light bends towards the normal when entering an optically denser medium.

Q17. Define a lens and list its two types.

Ans.

A lens is a transparent material bounded by two surfaces, of which one or both are spherical.

Types:

  1. Convex lens: Converging lens (thicker at the middle, thinner at the edges).
  2. Concave lens: Diverging lens (thinner at the middle, thicker at the edges).

Q18. What is the optical centre of a lens?

Ans.

The optical centre (O) is the central point of a lens through which a ray of light passes without undergoing any deviation.

Q19. What is the principal focus of a convex and a concave lens?

Ans.

Q20. State the sign convention used for lenses.

Ans.

SEBA Class 10 Science Chapter 10 Numericals

Q21. Write the lens formula and define the terms.

Ans.

The lens formula is:

1/f = 1/v – 1/u

Where:

Q22. Define magnification for a lens. Give its formula.

Ans.

Magnification (m) is the ratio of the height of the image to the height of the object.

m = height of image / height of object = v / u

Q23. What is the power of a lens? State its unit.

Ans.

Power (P) of a lens is the degree of convergence or divergence of light rays achieved by it, defined as the reciprocal of its focal length in metres.

P = 1 / f (in metres)

Unit: Dioptre (D), where 1 D = 1 m⁻¹.

Q24. What is the power of a convex lens of focal length 0.5 m?

Ans.

f = +0.5 m

P = 1 / f = 1 / (+0.5) = +2 D

Power = +2 Dioptres.

Q25. What is the power of a concave lens of focal length 0.4 m?

Ans.

f = -0.4 m

P = 1 / f = 1 / (-0.4) = -2.5 D

Power = -2.5 Dioptres.

HSLC Science Light Important Questions

Q26. What happens when two lenses are placed in contact?

Ans.

When lenses are placed in contact, their powers add up algebraically:

P = P1 + P2 + P3 + …

(Example: If P1 = +2 D and P2 = +1 D, total power P = +2 + 1 = +3 D).

Q27. Give two uses each of convex and concave lenses.

Ans.

Q28. Why does a convex lens burn paper when kept in sunlight?

Ans.

A convex lens converges parallel rays of sunlight passing through it to a single point at its principal focus. This concentrates a intense amount of heat energy at that focal spot, raising the temperature enough to burn the paper.

Q29. State two differences between reflection and refraction.

Ans.

FeatureReflectionRefraction
MechanismLight bounces back into the same mediumLight bends and passes into a different medium
Surface/BoundaryOccurs on polished/opaque surfaces (e.g., mirror)Occurs at the transparent boundary between two media

Q30. Why are convex mirrors preferred as rear-view mirrors?

Ans.

Convex mirrors always produce virtual, erect, and diminished images of objects behind the vehicle, providing a much wider field of view than a plane mirror can offer.

🔬 Updated Extra Questions Guide Notice: This page features an extensive collection of SEBA Class 10 Science Chapter 10 (Light – Reflection and Refraction) Extra Questions, Solved Numericals, and Conceptual Answers updated for the 2026–27 academic session. All ray diagrams, mirror/lens calculations, and physics practice notes strictly follow the latest revised Assam Board (SEBA) curriculum.

💡 Ace Your HSLC Science Exam:

Leave a Reply

Your email address will not be published. Required fields are marked *