Two lenses with focal lengths f, = + 5.0 cm and f, = + 10.0 cm are located 12. 5.0 cm apart. If an object 2.50 cm high is located 15.0 cm in front of the first lens, find (a) the position and (b) the size of the final image. Ans. (a) + 2.00 cm from second lens, (b) - 1.0 cm.

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter36: Image Formation
Section: Chapter Questions
Problem 36.46P: A diverging lens has a focal length of magnitude 20.0 cm. (a) Locate the image for object distances...
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12. Two lenses with focal lengths f, = + 5.0 cm and f, = + 10.0 cm are located
5.0 cm apart. If an object 2.50 cm high is located 15.0 cm in front of the first
lens, find (a) the position and (b) the size of the final image. Ans. (a) + 2.00 cm
from second lens, (b) - 1.0 cm.
15. An object is located 1.60 m from a white screen. What is the focal length
of the lens that will be required to form a real and inverted image on the
screen with a magnification of M=- 6.0?
Ans. 19.59 cm
Transcribed Image Text:12. Two lenses with focal lengths f, = + 5.0 cm and f, = + 10.0 cm are located 5.0 cm apart. If an object 2.50 cm high is located 15.0 cm in front of the first lens, find (a) the position and (b) the size of the final image. Ans. (a) + 2.00 cm from second lens, (b) - 1.0 cm. 15. An object is located 1.60 m from a white screen. What is the focal length of the lens that will be required to form a real and inverted image on the screen with a magnification of M=- 6.0? Ans. 19.59 cm
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