6. Does Snell's Law work when light goes from a medium with a high index of refraction to a medium with a low index of r
Posted: Sat Jul 02, 2022 10:17 pm
question Evidence: Features of the graph or measurements that support your claim Reasoning: Explain how the evidence supports your claim
1 2 3 4 5 6 7 8 9 O 1 A I Incident Angle degree *** 10 0 I 5 15 20 .** 25 *** 30 35 *** 40 i Refracted Angle degree 0 7 15 22 30 38 47 58 73 r sin(01) degree x 0.00 0.0872 0.174 0.259 0.342 0423 0.500 0.574 0.643 - sin(02) degree 0.00 0.122 0.259 0.375 0.500 0.616 0.733 0.848 0.956 y
sin(82) (degree) 0.8 06 04 0.2 0.1 Display Curve Fit Uncertainties sin(92) Curve 7 = Ax+B A: 1.48 B: 0.00471 degree RMSE 0.00569 degree P: 1.00 degree 02 Sin (01) vs Sin(82) sin(01) (degree) 0.5 0.6
Ray Wave Normal Bending Light 8 -90 60 30 30 30 30 60 90- 60. Prims More Tools Material A Index of Refraction (n) Material Gu Water Index of Refraction (n) A Winer 1.00 Glass 1.50 Glass PHET. =
6. Does Snell's Law work when light goes from a medium with a high index of refraction to a medium with a low index of refraction? Give your answer as a CER. Hint: Claim: Answer to the 1 2 3 4 5 6 7 8 9 O 1 A I Incident Angle degree *** 10 0 I 5 15 20 .** 25 *** 30 35 *** 40 i Refracted Angle degree 0 7 15 22 30 38 47 58 73 r sin(01) degree x 0.00 0.0872 0.174 0.259 0.342 0423 0.500 0.574 0.643 - sin(02) degree 0.00 0.122 0.259 0.375 0.500 0.616 0.733 0.848 0.956 y
sin(82) (degree) 0.8 06 04 0.2 0.1 Display Curve Fit Uncertainties sin(92) Curve 7 = Ax+B A: 1.48 B: 0.00471 degree RMSE 0.00569 degree P: 1.00 degree 02 Sin (01) vs Sin(82) sin(01) (degree) 0.5 0.6
Ray Wave Normal Bending Light 8 -90 60 30 30 30 30 60 90- 60. Prims More Tools Material A Index of Refraction (n) Material Gu Water Index of Refraction (n) A Winer 1.00 Glass 1.50 Glass PHET. =