1. When two lenses are used in combination, the first one forms an image that then serves as the object for the second lens. The magnification of the combination is the ratio of the height of the final image to the height of the object. A 1.20-cmcm-tallobject is 50.0 çmcm to the left of a lens of focal length of magnitude 40.0 cmcm, A second lens, this one having a focal length of magnitude 60.0 cmcm, is located 300.0 cmcm to the right of the first lens along the same optic axis.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter26: Image Formation By Mirrors And Lenses
Section: Chapter Questions
Problem 33P: The left face of a biconvex lens has a radius of curvature of magnitude 12.0 cm, and the right face...
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I got 4.8cm,150cm,and -7.2cm but its wrong

Example 12.3
1. When two lenses are used in combination, the first one forms an image that then serves as the
object for the second lens. The magnification of the combination is the ratio of the height of the
final image to the height of the object. A 1.20-cmcm-tallobject is 50.0 cmcm to the left of a lens
of focal length of magnitude 40.0 çmem, A second lens, this one having a focal length of
magnitude 60.0 cmcm, is located 300.0 cmem to the right of the first lens along the same optic
axis.
a. Find the height of the image I2
b. I212 is now the object for the second lens. Find the location (distance from the second
lens) of the image produced by the second lens.
С.
Find the height of the image produced by the second lens.
Transcribed Image Text:Example 12.3 1. When two lenses are used in combination, the first one forms an image that then serves as the object for the second lens. The magnification of the combination is the ratio of the height of the final image to the height of the object. A 1.20-cmcm-tallobject is 50.0 cmcm to the left of a lens of focal length of magnitude 40.0 çmem, A second lens, this one having a focal length of magnitude 60.0 cmcm, is located 300.0 cmem to the right of the first lens along the same optic axis. a. Find the height of the image I2 b. I212 is now the object for the second lens. Find the location (distance from the second lens) of the image produced by the second lens. С. Find the height of the image produced by the second lens.
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