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Create a theory/hypothesis of the experiment below predicting everything likely to happen when conducting the experiment. Complete the procedures and add values to the table.
Create a theory/hypothesis of the experiment below predicting everything likely to happen when conducting the experiment. Complete the procedures and add values to the table. Also create a physics lab report on the lab experiment.
Physics 11: Waves Lab Name: Jitiksha Dogra Snell's Law Class: Physics 11(6) Snell's law describes the relationship between the indicies of refraction of two materials and the angles of incidence and refraction of light that passes through the materials. Through the following investigation you will attempt to verify Snell's Law. Purpose: to verify Snell's Law Materials: 1 semicircular prism Air 1 ray box 1 sheet of polar coordinate paper Pins SA Mask Angle of Incidence Sit Plate Angle of Refraction Procedure A: 1. Position the prism in the center of the polar coordinate paper so that the flat side faces the ray box. Note that the 0-180 line acts as a normal and passes through the center of the flat surface. 2. Each of the lines on the polar coordinate paper is 15 apart. Shine the ray box on the center of the prism, along a 0 normal line and determine the angle of refraction out of the prism. Use the pins to mark the line of sight on each side of the prism. 3. Slide the ray box for an angle of incidence of 15 and record the angle of refraction. 4. Repeat for 30, 45, 60, and 75. 5. Calculate the ratio Procedure B: sine; for each pair of angles. sine, 1. Position the prism in the center of the polar coordinate paper so that the curved side faces the ray box. Note that the 0-180 line acts as a normal and passes through the center of the flat surface. 2. Each of the lines on the polar coordinate paper is 15 apart. Shine the ray box on the center of the prism, along a 0 normal line and determine the angle of refraction out of the prism. Use the pins to mark the line of sight on each side of the prism. 3. Slide the ray box for an angle of incidence of 15 and record the angle of refraction. 4. Repeat for 30, 45, 60, and 75. sine 5. Calculate the ratio for each pair of angles. sine angle of incidence () Procedure A Procedure B angle of refraction () sine sine angle of refraction () sine sino, 0 15 30 45 60 75
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