A system is formed from a diverging and converging lens as shown in the figure. The point labeled Feonenging is the focal point of the converging lens. An object is placed at a distance of 9 cm to the left of the diverging lens. The distance between the lenses is 24 cm. The focal lengths of the diverging and converging lenses are -18 cm and 14 cm, respectively. Object conging a. Find the image distance d (relative to lens 1) of the image produced by lens I. Find the object distance daa relative to lens 2. (Include proper algebraic sign) Image distance dy 6 cm Object distance das 30 cm b. Find the final image distance dz (relative to lens 2). Include the proper algebraic sign. 26.25 cm c. Find the overall magnification.

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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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3. A system is formed from a diverging and converging lens as show in the figure. The
point labeled Feomerying is the focal point of the converging lens. An object is placed at a
distance of 9 cm to the left of the diverging lens. The distance between the lenses is 24
cm. The focal lengths of the diverging and converging lenses are -18 cm and 14 cm,
respectively.
#31
Object
#2
converging
a. Find the image distance d (relative to lens 1) of the image produced by lens I.
Find the object distance daz relative to lens 2. (Include proper algebraic sign)
Image distance du
6 cm
Object distance dat
30 cm
b. Find the final image distance dz (relative to lens 2). Include the proper algebraic
sign.
26.25 cm
c. Find the overall magnification.
-0.5833
Transcribed Image Text:3. A system is formed from a diverging and converging lens as show in the figure. The point labeled Feomerying is the focal point of the converging lens. An object is placed at a distance of 9 cm to the left of the diverging lens. The distance between the lenses is 24 cm. The focal lengths of the diverging and converging lenses are -18 cm and 14 cm, respectively. #31 Object #2 converging a. Find the image distance d (relative to lens 1) of the image produced by lens I. Find the object distance daz relative to lens 2. (Include proper algebraic sign) Image distance du 6 cm Object distance dat 30 cm b. Find the final image distance dz (relative to lens 2). Include the proper algebraic sign. 26.25 cm c. Find the overall magnification. -0.5833
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