Building contractors often install double-glazed windows to prevent thermal energy (heat) from entering or exiting a building. In addition to being effective insulators, such windows present interesting optical effects. glass In the figure, a double-glazed window consists of two identical panes of glass (ng = 1.54), each yg = 32.0 mm thick, %3D air separated by an air gap of ya = 25.6 mm. If light incident on the glass makes an angle of ø = 40.00° with respect to the glass, find the shift in path Ax as the light enters the room. Use glass na = 1.00 for the index of refraction of air. 23.1489 Ax = mm Incorrect

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Chapter1: Units, Trigonometry. And Vectors
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Building contractors often install double-glazed windows to
prevent thermal energy (heat) from entering or exiting a
building. In addition to being effective insulators, such
windows present interesting optical effects.
g
glass
In the figure, a double-glazed window consists of two identical
panes of glass (ng
1.54), each yg = 32.0 mm thick,
%3D
air
separated by an air gap of ya
25.6 mm. If light incident on
%3D
the glass makes an angle of o = 40.00° with respect to the
glass, find the shift in path Ax as the light enters the room. Use
glass
na = 1.00 for the index of refraction of air.
Ax
23.1489
Ax =
mm
Incorrect
Transcribed Image Text:Building contractors often install double-glazed windows to prevent thermal energy (heat) from entering or exiting a building. In addition to being effective insulators, such windows present interesting optical effects. g glass In the figure, a double-glazed window consists of two identical panes of glass (ng 1.54), each yg = 32.0 mm thick, %3D air separated by an air gap of ya 25.6 mm. If light incident on %3D the glass makes an angle of o = 40.00° with respect to the glass, find the shift in path Ax as the light enters the room. Use glass na = 1.00 for the index of refraction of air. Ax 23.1489 Ax = mm Incorrect
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