In Fig. 33-48 a , a light ray in water is incident at angle θ 1 on a boundary with an underlying material, into which some of the light refracts. There are two choices of underlying material. For each, the angle of refraction θ 2 versus the incident angle θ 1 is given in Fig. 33-48 b . The vertical axis scale is set by θ 1 s = 90°. Without calculation, determine whether the index of refraction of (a) material 1 and (b) material 2 is greater or less than the index of water ( n = 1.33). What is the index of refraction of (c) material 1 and (d) material 2? Figure 33-48 Problem 48.
In Fig. 33-48 a , a light ray in water is incident at angle θ 1 on a boundary with an underlying material, into which some of the light refracts. There are two choices of underlying material. For each, the angle of refraction θ 2 versus the incident angle θ 1 is given in Fig. 33-48 b . The vertical axis scale is set by θ 1 s = 90°. Without calculation, determine whether the index of refraction of (a) material 1 and (b) material 2 is greater or less than the index of water ( n = 1.33). What is the index of refraction of (c) material 1 and (d) material 2? Figure 33-48 Problem 48.
In Fig. 33-48a, a light ray in water is incident at angle θ1 on a boundary with an underlying material, into which some of the light refracts. There are two choices of underlying material. For each, the angle of refraction θ2 versus the incident angle θ1 is given in Fig. 33-48b. The vertical axis scale is set by θ1s = 90°. Without calculation, determine whether the index of refraction of (a) material 1 and (b) material 2 is greater or less than the index of water (n = 1.33). What is the index of refraction of (c) material 1 and (d) material 2?
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