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Image Formation · CSEC Physics

28 past-paper questions on Image Formation, part of Waves and Optics, from every CSEC Physics paper on Quelpr.

  1. 5(a)4 marks· CSEC Physics · 1991 · Paper 2Identify the parts of the eye labelled A, B, C, and D.
  2. 5(c)8 marks· CSEC Physics · 1991 · Paper 2Complete the scale ray drawing to determine the position and magnification of the image.
  3. 5(d)(i)4 marks· CSEC Physics · May/June 2022 · Paper 2Calculate the image distance, v.
  4. 5(d)(ii)2 marks· CSEC Physics · May/June 2022 · Paper 2Determine the magnification of the image formed.
  5. 5(d)(iii)3 marks· CSEC Physics · May/June 2022 · Paper 2State the nature and position of the image formed.
  6. 1(d)4 marks· Physics Q1 1(d)Given that c = 1/f, determine f, the focal length of the lens.
  7. 1(f)(ii)4 marks· Physics Q1 1(f)(ii)the magnification of this image.
  8. 3(c)(i)3 marks· Physics Q3 3(c)(i)The object O is 100 m from the centre of the eye lens and the magnification of the eye lens is 0.005. Determine the distance of the retina from the centre of the eye lens.
  9. 3(c)(ii)1 mark· Physics Q3 3(c)(ii)Write a formula for calculating the magnification of the eye lens using the object height and the image height
  10. 4(c)(i)3 marks· Physics Q4 4(c)(i)Calculate the image distance.
  11. 4(c)(ii)3 marks· Physics Q4 4(c)(ii)Calculate the magnification of the image formed.
  12. 5(a)(ii)2 marks· Physics Q5 5(a)(ii)State the orientation of EACH image so produced.
  13. 5(b)(i)3 marks· Physics Q5 5(b)(i)Calculate the magnification where a lens produces an image height of 3.6 mm for an object 2.4 mm in height.
  14. 5(b)(ii)3 marks· Physics Q5 5(b)(ii)If the phone is placed 20 cm from the lens, calculate the distance the screen must be placed from the lens in order to obtain a clear image of the phone.
  15. 5(b)(ii)3 marks· Physics Q5 5(b)(ii)For the same magnification, calculate the image distance given that the object distance is 20 cm.
  16. 5(b)(iii)3 marks· Physics Q5 5(b)(iii)Calculate the magnification of the image on the external screen formed in (b)(ii).
  17. 5(b)(iii)3 marks· Physics Q5 5(b)(iii)Calculate the focal length of this lens.
  18. 5(b)(iv)1 mark· Physics Q5 5(b)(iv)If the dimensions of the phone screen are 11.0 cm × 6.0 cm, calculate the dimensions of the image of the phone screen on the external screen.
  19. 5(b)(v)1 mark· Physics Q5 5(b)(v)State whether the image formed in (b)(ii) is upright or inverted.
  20. 5(b)(vi)1 mark· Physics Q5 5(b)(vi)Suggest one way in which the image formed in (b)(ii) can be made larger.
  21. 6(a)(ii)1 mark· Physics Q6 6(a)(ii)Write, in words or symbols, the formula for the magnification of an object.
  22. 6(b)(i)3 marks· Physics Q6 6(b)(i)the image distance
  23. 6(b)(i)5 marks· Physics Q6 6(b)(i)Calculate the position of the image formed and state on what side of the lens it is located.
  24. 6(b)(ii)3 marks· Physics Q6 6(b)(ii)Calculate the magnification of the image formed.
  25. 6(b)(ii)3 marks· Physics Q6 6(b)(ii)the magnification
  26. 6(b)(iii)2 marks· Physics Q6 6(b)(iii)the height of the image formed
  27. 6(b)(iii)1 mark· Physics Q6 6(b)(iii)Is the image formed real or virtual?
  28. 6(b)(iv)1 mark· Physics Q6 6(b)(iv)whether the image formed is real or virtual.