Camilla sets the index of refraction and angle of incidence to some values (any particular values are acceptable). What does Tristan say is the relationship between the angle of incidence and the angle reflection? O "The angle of incidence is equal to the angle of reflection." O "The angle of incidence is greater than the angle of reflection." O "The anglof incidence is less than the angle of reflection." O "The angle of incidence is either greater than or less than the angle of reflection, depending on the values of glass and 8₁."

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Chapter1: Units, Trigonometry. And Vectors
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index of refraction (glass)
וי-י-י-י-י-י-י-י-י-
1.00 1.10 1.20 1.30 1.40 1.50 1.60 1.70 1.80 1.90
Click here to open the simulation in a new window.
"glass
1.35
ray
Part 1 of 7 - Reflection of Light Rays
Camilla sets the index of refraction and angle of incidence to some values (any particular values are acceptable). What does Tristan say is the relationship between the angle of incidence and the angle of
reflection?
O "The angle of incidence is equal to the angle of reflection."
Submit Skip (you cannot come back)
O "The angle of incidence is greater than the angle of reflection."
O "The anglof incidence is less than the angle of reflection."
O "The angle of incidence is either greater than or less than the angle of reflection, depending on the values of glass and 8₁."
Transcribed Image Text:index of refraction (glass) וי-י-י-י-י-י-י-י-י- 1.00 1.10 1.20 1.30 1.40 1.50 1.60 1.70 1.80 1.90 Click here to open the simulation in a new window. "glass 1.35 ray Part 1 of 7 - Reflection of Light Rays Camilla sets the index of refraction and angle of incidence to some values (any particular values are acceptable). What does Tristan say is the relationship between the angle of incidence and the angle of reflection? O "The angle of incidence is equal to the angle of reflection." Submit Skip (you cannot come back) O "The angle of incidence is greater than the angle of reflection." O "The anglof incidence is less than the angle of reflection." O "The angle of incidence is either greater than or less than the angle of reflection, depending on the values of glass and 8₁."
Camilla and Tristan are studying for their physics class at a café, and Tristan notices that the straw in his glass of water looks bent, which he has heard is caused by the refraction of light through
different media. Since they have just started learning about refraction in class, he suggests to Camilla that they spend some time learning more about how refraction works.
The friends review what they know so far: As a beam of light strikes the surface of a transparent medium at angle 8₁, it is partially reflected and partially transmitted. The reflected beam leaves at the
angle of reflection 0₁', while the refracted beam enters the medium at the angle of refraction 8₂.
They use this simulation, which shows the propagation of a beam of light as it encounters a change in its medium of travel, to explore the phenomenon. The incident region has index of refraction n = 1.
They can adjust the index of refraction of the transmitted region and the angle of incidence for the incident ray with the sliders. Readouts are provided for the angle of reflection and angle of refraction.
4
Incident
ray
o
40 degrees
0
20
40
60
80
Air
Glass
index of refraction (glass)
Normal
o
01
B
||||||||||||
1.00 1.10 1.20 1.30 1.40 1.50 1.60 1.70 1.80 1.90
n = 1
n=nglass
nglass
1.35
Reflected
ray
01
40 degrees
02
28.4 degrees
Refracted.
ray
Transcribed Image Text:Camilla and Tristan are studying for their physics class at a café, and Tristan notices that the straw in his glass of water looks bent, which he has heard is caused by the refraction of light through different media. Since they have just started learning about refraction in class, he suggests to Camilla that they spend some time learning more about how refraction works. The friends review what they know so far: As a beam of light strikes the surface of a transparent medium at angle 8₁, it is partially reflected and partially transmitted. The reflected beam leaves at the angle of reflection 0₁', while the refracted beam enters the medium at the angle of refraction 8₂. They use this simulation, which shows the propagation of a beam of light as it encounters a change in its medium of travel, to explore the phenomenon. The incident region has index of refraction n = 1. They can adjust the index of refraction of the transmitted region and the angle of incidence for the incident ray with the sliders. Readouts are provided for the angle of reflection and angle of refraction. 4 Incident ray o 40 degrees 0 20 40 60 80 Air Glass index of refraction (glass) Normal o 01 B |||||||||||| 1.00 1.10 1.20 1.30 1.40 1.50 1.60 1.70 1.80 1.90 n = 1 n=nglass nglass 1.35 Reflected ray 01 40 degrees 02 28.4 degrees Refracted. ray
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