You are viewing a candle through a converging lens. The candle is 1.5m behind the lens but you see it 2.1m behind the lens. What is the focal length of the lens? 2.1m 1.5m 1.5m 2.1m L.ắm + 21 = } O Im +à = } 1.5m

University Physics Volume 3
17th Edition
ISBN:9781938168185
Author:William Moebs, Jeff Sanny
Publisher:William Moebs, Jeff Sanny
Chapter1: The Nature Of Light
Section: Chapter Questions
Problem 34P: Suppose a man stands in front of a mm-or as show below. His eyes are 1.65 m above the floor and the...
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You are viewing a candle through a converging lens. The candle is 1.5m behind the lens but you see it 2.1m behind the lens. What is the focal length of the lens?
2.1m
1.5m
1.5m
2.1m
L.ắm + 21 = }
O Im +à = }
1.5m
Transcribed Image Text:You are viewing a candle through a converging lens. The candle is 1.5m behind the lens but you see it 2.1m behind the lens. What is the focal length of the lens? 2.1m 1.5m 1.5m 2.1m L.ắm + 21 = } O Im +à = } 1.5m
Side A of the below thin lens has a radius of curvature of 220cm and side B is flat. If the index of refraction is 2.9, which calculation solves for the focal length of the lens?
[(2.9-1) (mom-1)]구
O (2.9 – 1) (– 20em)
O (2.9 – 1) (20 - 1)
( 220cm
220cm
2
O 12 220cm
(2.9
Transcribed Image Text:Side A of the below thin lens has a radius of curvature of 220cm and side B is flat. If the index of refraction is 2.9, which calculation solves for the focal length of the lens? [(2.9-1) (mom-1)]구 O (2.9 – 1) (– 20em) O (2.9 – 1) (20 - 1) ( 220cm 220cm 2 O 12 220cm (2.9
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