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Procedures: 1) Go to https://phet.colorado.edu/sims/html/bending-light/latest/bending-light_en.html and select More Tools. Select glass as the incident material and Mystery A and the material the light will transmit
Procedures: 1) Go to https://phet.colorado.edu/sims/html/bending-light/latest/bending-light_en.html and select "More Tools." Select glass as the incident material and Mystery A and the material the light will transmit into. Turn on Normal and Angles. 2) Change the angle of incidence in glass, c, to 30". Does the transmitted light Ray Wave bend toward or away from the normal? Does this information tell you that the light is entering an index greater or less than 1.500? Material Gaus 0.0 ndex of Refraction (n) ( 1.500 . . . . .. 3) Measure the angle of refraction into Material Mystery A Mystery A, 0A in Table 1. Repeat for What is n? incident angles 450 and 60 and fill out the table below. 4) Using Snell's Law, solve for the index of refraction of Mystery A, NA. Complete the table below and find the Angus & average, nA- Table 1: part 1 data Glass: nc =1.500 0 A nA ?[?] ?[.?] 30.0 45.0 60.0 nA Part (2): Total Internal Reflection Credit: Joshua SondereggerNow, change Mystery A to Mystery B. Change the angle of incidence in glass. 35, to 30. Does the transmitted light bend toward or away from the normal'? Does this information tell you that the light is entering an index greater or less than If the medium of transmission has a lower index of refraction than 1500' there exists angles of incidence that will have zero transmission (total internal reection). Observe what happens to the transmission when you slowly sweep through all available angles of incidence [El-90 degrees). At what angle(s) of incidence is there total internal reection? 3-32 ....................... L. 4) What angle is the critical angle? 5] Solve for the index ofrefraction ofMystery 13, n3 using Snell's Law and the critical angle. Show 6) Conrm your answer by measuring the speed of the refracted light using. Use a the definition ofthe index of refraction to find n What material are Mystery A and Mystery B made of'? Use the values obtained through Snell's law as your experimental results. Make sure to write the name of the material and its index of refraction \"copy and paste web source* Credit; Joshua Sonderegger
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