Suppose we model the cornea of the human eye as a thin lens with a focal length of 2.00 cm. We also assume the material to have a refractive index of 1.38. If its front surface has a radius of curvature of +5.00 mm, what is the radius of curvature of the backside of the cornea? A. -6.16 mm B. -0.90 mm C. +3.02 mm D. +14.6 mm

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter26: Image Formation By Mirrors And Lenses
Section: Chapter Questions
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Suppose we model the cornea of the human eye as a thin lens with a focal length
of 2.00 cm. We also assume the material to have a refractive index of 1.38. If its front surface
has a radius of curvature of +5.00 mm, what is the radius of curvature of the backside of the
cornea?
A. -6.16 mm
B. -0.90 mm
C. +3.02 mm
D. +14.6 mm
Transcribed Image Text:Suppose we model the cornea of the human eye as a thin lens with a focal length of 2.00 cm. We also assume the material to have a refractive index of 1.38. If its front surface has a radius of curvature of +5.00 mm, what is the radius of curvature of the backside of the cornea? A. -6.16 mm B. -0.90 mm C. +3.02 mm D. +14.6 mm
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