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Using the diagram as a guide, carry out the following instructions:

  1. Fix a plain sheet of paper on the drawing board.
  2. Place the rectangular glass prism on the paper and trace its outline, ABCD. Remove the prism.
  3. Draw a normal NMP to meet AB and DC at M and P respectively such that |AM| =|DP| = 2.0cm.
  4. Trace the ray PQ with two pins, P\(_{1}\), and P\(_{2}\), at P and Q respectively such that angle MPQ = i = 5º.
  5. Replace the prism on its outline. Trace the emergent ray with two other pins P\(_{3}\) and P\(_{4}\) such that they lie in a straight line with P\(_{2}\) and the image of P\(_{1}\) viewed through the glass prism.
  6. Measure and record \(\theta\), the angle between the emergent ray and the face AB of the glass prism.
  7. Evaluate cos \(\theta\) and sin i.
  8. Repeat the procedure for four other values of i= 10°, 15°, 20°, and 25°. Tabulate your readings.
  9. Plot a graph of cos \(\theta\) on the vertical axis against sin i on the horizontal axis.
  10. Determine the slope of the graph.
  11. State two precautions taken to ensure accurate results.  Attach your traces to your answer booklet

(b)i. State the laws of refraction of light.

ii. Explain what is meant by the statement the refractive index of a material is 1.65.

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