Sciences - Co-ordinated (9-1) - 0973 CIE

Light Continued

Overview

A straw looks bent in a glass of water, a diamond sparkles with rainbow fire, and a tiny camera lens captures a whole landscape. All of these come from one idea: light changes speed and bends when it crosses between materials. Control that bending and you can focus, magnify, trap light in a fibre, or split white light into its colours.

In this lesson you will master refraction and refractive index, the critical angle and total internal reflection (with its use in optical fibres), the action of converging and diverging lenses, ray diagrams for real and virtual images, the dispersion of white light by a prism, and the seven colours of the spectrum. Every calculation is shown with its equation, substitution and units.

Objectives

  1. Define and use the terms normal, angle of incidence and angle of refraction
  2. Describe an experiment to show refraction of light by transparent blocks of different shapes
  3. Describe the passage of light through a transparent material (limited to the boundaries between two mediums only)
  4. State the meaning of critical angle
  5. Describe internal reflection and total internal reflection using both experimental and everyday examples
  6. Describe the action of thin converging and thin diverging lenses on a parallel beam of light
  7. Define and use the terms focal length, principal axis and principal focus (focal point)
  8. Draw and use ray diagrams for the formation of a real image by a converging lens
  9. Describe the characteristics of an image using the terms enlarged/same size/diminished, upright/inverted and real/virtual
  10. Know that a virtual image is formed when diverging rays are extrapolated backwards and does not form a visible projection on a screen
  11. Describe the dispersion of light as illustrated by the refraction of white light by a glass prism
  12. Know the traditional seven colours of the visible spectrum in order of frequency and in order of wavelength
  13. [Supplement] Define refractive index, n, as the ratio of the speeds of a wave in two different regions
  14. [Supplement] Recall and use the equation sin i n = sin r
  15. [Supplement] Recall and use the equation n = 1 / sin c
  16. [Supplement] Describe the use of optical fibres, particularly in telecommunications
  17. [Supplement] Draw and use ray diagrams for the formation of a virtual image by a converging lens
  18. [Supplement] Describe the use of a single lens as a magnifying glass
  19. [Supplement] Describe the use of converging and diverging lenses to correct long-sightedness and short- sightedness
  20. [Supplement] Recall that visible light of a single frequency is described as monochromatic

Lesson Note

Spectacles, cameras, microscopes, projectors and the optical fibres that carry the internet all work by bending light in controlled ways. This topic is dense with definitions, ray diagrams and two short equations, so it rewards careful, organised study: a few clear rules unlock a large number of marks.

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Lesson Evaluation

Congratulations on completing the lesson on Light Continued. Now that youve explored the key concepts and ideas, its time to put your knowledge to the test. This section offers a variety of practice questions designed to reinforce your understanding and help you gauge your grasp of the material.

You will encounter a mix of question types, including multiple-choice questions, short answer questions, and essay questions. Each question is thoughtfully crafted to assess different aspects of your knowledge and critical thinking skills.

Use this evaluation section as an opportunity to reinforce your understanding of the topic and to identify any areas where you may need additional study. Don't be discouraged by any challenges you encounter; instead, view them as opportunities for growth and improvement.

  1. When light passes from air into glass it bends A. away from the normal and speeds up B. towards the normal and slows down C. towards the normal and speeds up D. along the surface Answer: B
  2. A glass has refractive index 1.5. Light travels in it at (speed in air = 3.0 x 10^8 m/s) A. 4.5 x 10^8 m/s B. 3.0 x 10^8 m/s C. 2.0 x 10^8 m/s D. 1.5 x 10^8 m/s Answer: C
  3. The critical angle of a material of refractive index 2.0 is closest to (sin c = 1/n) A. 24 degrees B. 30 degrees C. 42 degrees D. 60 degrees Answer: B
  4. An object placed beyond 2F from a converging lens forms an image that is A. virtual, upright, enlarged B. real, inverted, diminished C. real, upright, same size D. virtual, inverted, enlarged Answer: B
  5. Which colour of the visible spectrum is refracted the most by a prism? A. red B. yellow C. green D. violet Answer: D

Available on the Green Bridge App

Download the Green Bridge CBT app on your phone or computer to access full lesson notes, practice questions, and more.

Full lesson notes with diagrams
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Study offline, anytime, anywhere
Available on Android, Windows, macOS, and Linux

Available on the Green Bridge App

Download the Green Bridge CBT app on your phone or computer to access full lesson notes, practice questions, and more.

Full lesson notes with diagrams
AI-powered learning assistant
Study offline, anytime, anywhere
Available on Android, Windows, macOS, and Linux

Practice Mock Questions

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