Two-lens systems. In the figure, stick figure O (the object) stands on the common central axis of two thin, symmetric lenses, which are mounted in the boxed regions. Lens 1 is mounted within the boxed region closer to O, which is at object distance p1. Lens 2 is mounted within the farther boxed region, at distance d. Each problem in the table refers to a different combination of lenses and different values for distances, which are given in centimeters. The type of lens is indicated by C for converging and D for diverging; the number after Cor Dis the distance between a lens and either of its focal points (the proper sign of the focal distance is not indicated). Find (a) the image distance iz for the image produced by lens 2 (the final image produced by the system) and (b) the overall lateral magnification M for the system, including signs. Also, determine whether the final image is (c) real or virtual, (d) inverted from object O or noninverted, and (e) on the same side of lens 2 as object O or on the opposite side.

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Two-lens systems. In the figure, stick figure O (the object) stands on the common central axis of two thin, symmetric lenses, which are
mounted in the boxed regions. Lens 1 is mounted within the boxed region closer to O, which is at object distance p1. Lens 2 is
mounted within the farther boxed region, at distance d. Each problem in the table refers to a different combination of lenses and
different values for distances, which are given in centimeters. The type of lens is indicated by C for converging and D for diverging;
the number after Cor D is the distance between a lens and either of its focal points (the proper sign of the focal distance is not
indicated). Find (a) the image distance iz for the image produced by lens 2 (the final image produced by the system) and (b) the overall
lateral magnification M for the system, including signs. Also, determine whether the final image is (c) real or virtual, (d) inverted from
object O or noninverted, and (e) on the same side of lens 2 as object O or on the opposite side.
(a) (b) (c)
(d)
(e)
P1
Lens 1 d
Lens 2 iz M RV I/NI Side
+28
C, 9.4 8.1 C, 6.2
(a) Number
i
4.8
Units
cm
(b)
Number
i
0.11
Units
This answer has no units
>
Transcribed Image Text:Two-lens systems. In the figure, stick figure O (the object) stands on the common central axis of two thin, symmetric lenses, which are mounted in the boxed regions. Lens 1 is mounted within the boxed region closer to O, which is at object distance p1. Lens 2 is mounted within the farther boxed region, at distance d. Each problem in the table refers to a different combination of lenses and different values for distances, which are given in centimeters. The type of lens is indicated by C for converging and D for diverging; the number after Cor D is the distance between a lens and either of its focal points (the proper sign of the focal distance is not indicated). Find (a) the image distance iz for the image produced by lens 2 (the final image produced by the system) and (b) the overall lateral magnification M for the system, including signs. Also, determine whether the final image is (c) real or virtual, (d) inverted from object O or noninverted, and (e) on the same side of lens 2 as object O or on the opposite side. (a) (b) (c) (d) (e) P1 Lens 1 d Lens 2 iz M RV I/NI Side +28 C, 9.4 8.1 C, 6.2 (a) Number i 4.8 Units cm (b) Number i 0.11 Units This answer has no units >
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