Figure above shows a thin converging lens in front of a concave spherical mirror with the radius of curvature R = 7.0cm. Assume that the lens focal points F1 and F2 are 8.0 cm from the center of the lens. The lens and mirror are 24.0 cm apart, and an object is placed 6.0cm to the left of the lens. How far from the lens is the position of the final image? State your answer in cm to the nearest 0.1 cm.

University Physics Volume 3
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ISBN:9781938168185
Author:William Moebs, Jeff Sanny
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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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Figure above shows a thin converging lens in front of a concave spherical mirror
with the radius of curvature R = 7.0cm. Assume that the lens focal points F1 and F2
are 8.0 cm from the center of the lens. The lens and mirror are 24.0 cm apart, and an
object is placed 6.0cm to the left of the lens. How far from the lens is the position of
the final image? State your answer in cm to the nearest 0.1 cm.
Transcribed Image Text:A Question & Retake question C F Figure above shows a thin converging lens in front of a concave spherical mirror with the radius of curvature R = 7.0cm. Assume that the lens focal points F1 and F2 are 8.0 cm from the center of the lens. The lens and mirror are 24.0 cm apart, and an object is placed 6.0cm to the left of the lens. How far from the lens is the position of the final image? State your answer in cm to the nearest 0.1 cm.
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