For the concave lens there is only one case for image formation. Where the object is relative to the focal point does not affect the characteristics of the image. The magnitude of the focal length of the concave lens is 6 dots. Locate the image of an object arrow using the three principal rays. Measure the object height and object distance, the image height and image distance. Record this data in the table below and complete the calculations. The object is now closer than the focal point. Does the image have the same characteristics?

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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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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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Part II - Bi-Concave Lenses (Diverging Lenses):
For the concave lens there is only one case for image formation. Where the object is relative to the focal
point does not affect the characteristics of the image. The magnitude of the focal length of the concave
lens is 6 dots. Locate the image of an object arrow using the three principal rays. Measure the object
height and object distance, the image height and image distance. Record this data in the table below and
complete the calculations.
The object is now closer than the focal point. Does the image have the same characteristics?
Problem Object Object Image Image
distances height distance height
(m) h (m) s' (m) h' (m)
Far
object
Close
object
Magnification, Magnification,
m=
h
m=
S
Questions (must be typed and attached)
1. Fully describe the images created by diverging lenses.
2. Can the image created by a diverging lens be projected onto a screen? Explain why or why
not?
Transcribed Image Text:Part II - Bi-Concave Lenses (Diverging Lenses): For the concave lens there is only one case for image formation. Where the object is relative to the focal point does not affect the characteristics of the image. The magnitude of the focal length of the concave lens is 6 dots. Locate the image of an object arrow using the three principal rays. Measure the object height and object distance, the image height and image distance. Record this data in the table below and complete the calculations. The object is now closer than the focal point. Does the image have the same characteristics? Problem Object Object Image Image distances height distance height (m) h (m) s' (m) h' (m) Far object Close object Magnification, Magnification, m= h m= S Questions (must be typed and attached) 1. Fully describe the images created by diverging lenses. 2. Can the image created by a diverging lens be projected onto a screen? Explain why or why not?
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