4. A tiny parasaurolophus is standing 12 cm in front of a spherical lens with a refractive power of 12.5 D, and the lens is sitting 14 cm in front of a spherical mirror with a focal length of 40 cm as shown in the figure. (15 points) (a) لها 2 cm -14 cm- What is the final image distance? What is its (total) magnification? (b) The final image is ☐ real ☐ virtual (c) Sketch the final image in the figure at the correct location, with the proper orientation and correct size (relative to the object). You can draw an arrow instead of a parasaurolophus. :)

College Physics
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ISBN:9781305952300
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Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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4. A tiny parasaurolophus is standing 12 cm in front of a spherical lens with a refractive power
of 12.5 D, and the lens is sitting 14 cm in front of a spherical mirror with a focal length of
40 cm as shown in the figure. (15 points)
(a)
لها
2 cm
-14 cm-
What is the final image distance? What is its (total) magnification?
Transcribed Image Text:4. A tiny parasaurolophus is standing 12 cm in front of a spherical lens with a refractive power of 12.5 D, and the lens is sitting 14 cm in front of a spherical mirror with a focal length of 40 cm as shown in the figure. (15 points) (a) لها 2 cm -14 cm- What is the final image distance? What is its (total) magnification?
(b)
The final image is ☐ real ☐ virtual
(c)
Sketch the final image in the figure at the correct location, with the proper orientation and
correct size (relative to the object). You can draw an arrow instead of a parasaurolophus. :)
Transcribed Image Text:(b) The final image is ☐ real ☐ virtual (c) Sketch the final image in the figure at the correct location, with the proper orientation and correct size (relative to the object). You can draw an arrow instead of a parasaurolophus. :)
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