a) The inverse of the focal length (f) of a thin lens surrounded by air is given by the lens-maker's equation. b) The ratio of the object height to image height is the lateral magnification due to a mirror or lens. c) A spherical mirror has a focal length of +10.0 cm. For an object located at 25.0 cm Infront of the mirror, The image produced has a magnification of about - 0.667.

University Physics Volume 3
17th Edition
ISBN:9781938168185
Author:William Moebs, Jeff Sanny
Publisher:William Moebs, Jeff Sanny
Chapter2: Geometric Optics And Image Formation
Section: Chapter Questions
Problem 118P: A point source of light is 50 cm in front of a converging lens of focal length 30 cm. A concave...
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a)
The inverse of the focal length (f) of a thin lens surrounded by air is given by the
lens-maker's equation.
b)
The ratio of the object height to image height is the lateral magnification due to a
mirror or lens.
c)
A spherical mirror has a focal length of +10.0 cm. For an object located at 25.0
cm Infront of the mirror, The image produced has a magnification of about - 0.667.
Transcribed Image Text:a) The inverse of the focal length (f) of a thin lens surrounded by air is given by the lens-maker's equation. b) The ratio of the object height to image height is the lateral magnification due to a mirror or lens. c) A spherical mirror has a focal length of +10.0 cm. For an object located at 25.0 cm Infront of the mirror, The image produced has a magnification of about - 0.667.
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