distance should the camera lens be focused? Tivo plane mirrors meet at a 135° angle as yol Fig. 23–52. If light rays s at 34° as shown, at what angle ø do they leave the second mirror? FIGURE 23-52 Problem 3. 34° 6. 4. (II) A D A person eyes are 1.72 m above the floor stands 2 20 m in front of a vertical plane mirror whose bottom edge whose is 38 cm above the floor, Fig. 23-53. What is the horizontal distance x to the base of the wall supporting the mirror of the nearest point on the floor that can be seen reflected in 2.20 m→ the mirror? 1.72 m FIGURE 23-53 Problem 4. 38 cm

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Chapter26: Vision And Optical Instruments
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a person whos eyes are 1.72 m above the floor stands 2.20m in front of a vertical plane mirror whose bottoms edge is .38m above the floor what is the horizontal distance x to the base of the wall supporting the mirror ofthe nearest point on the floor that can be reflected in the mirror.

distance should the camera lens be focused?
Tivo plane mirrors meet at a 135° angle
as yol
Fig. 23–52. If light rays s
at 34° as shown, at what angle ø do
they leave the second mirror?
FIGURE 23-52
Problem 3.
34°
6.
4. (II) A
D A person eyes are 1.72 m above the floor stands
2 20 m in front of a vertical plane mirror whose bottom edge
whose
is 38 cm above the floor, Fig. 23-53. What is the horizontal
distance x to the base of the wall supporting the mirror of
the nearest point on the floor
that can be seen reflected in
2.20 m→
the mirror?
1.72 m
FIGURE 23-53
Problem 4.
38 cm
Transcribed Image Text:distance should the camera lens be focused? Tivo plane mirrors meet at a 135° angle as yol Fig. 23–52. If light rays s at 34° as shown, at what angle ø do they leave the second mirror? FIGURE 23-52 Problem 3. 34° 6. 4. (II) A D A person eyes are 1.72 m above the floor stands 2 20 m in front of a vertical plane mirror whose bottom edge whose is 38 cm above the floor, Fig. 23-53. What is the horizontal distance x to the base of the wall supporting the mirror of the nearest point on the floor that can be seen reflected in 2.20 m→ the mirror? 1.72 m FIGURE 23-53 Problem 4. 38 cm
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