A thin converging lens has a focal length of f= 4.0 m. The base of a vertical object of height y 4.0 m is a distance s = 8.0 m away from the point V of intersection of the principal axis with the center of the converging lens, as shown in the picture below. a) Find & draw the object's image graphically by drawing the appropriate rays. b) Determine the image distance s' and image height y' algebraically by using the right equation to find both image distance s' and image height y', as well as the magnification m. Circle the appropriate answers: Is it a real or a virtual image? Is it an upright or an inverted image? (Each square below is 1.0 m wide by 1.0 m tall)

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 40P
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A thin converging lens has a focal length of f=4.0 m. The base of a vertical object of height y=
4.0 m is a distance s = 8.0 m away from the point V of intersection of the principal axis with the
center of the converging lens, as shown in the picture below.
a) Find & draw the object's image graphically by drawing the appropriate rays.
b) Determine the image distance s'and image height y' algebraically by using the right equation
to find both image distance s' and image height y’, as well as the magnification m. Circle the
appropriate answers: Is it a real or a virtual image? Is it an upright or an inverted image? (Each
square below is 1.0 m wide by 1.0 m tall)
Transcribed Image Text:A thin converging lens has a focal length of f=4.0 m. The base of a vertical object of height y= 4.0 m is a distance s = 8.0 m away from the point V of intersection of the principal axis with the center of the converging lens, as shown in the picture below. a) Find & draw the object's image graphically by drawing the appropriate rays. b) Determine the image distance s'and image height y' algebraically by using the right equation to find both image distance s' and image height y’, as well as the magnification m. Circle the appropriate answers: Is it a real or a virtual image? Is it an upright or an inverted image? (Each square below is 1.0 m wide by 1.0 m tall)
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