A thin lens has a focal length of 25.0 cm. (a) Find the location of the image (in cm from the lens) formed by the lens when an object is placed P₁ = 26.9 cm in front of the lens. (Enter a negative distance if the image is in front of the lens.) 588.54 x Apply the thin-lens equation. Recall that p > 0 if the object is in front of the lens. cm from the lens Choose the correct description of the image. (Select all that apply.) ✔virtual upright real reduced inverted enlarged Recall the sign conventions for thin lenses. If the image location is positive, it is real, and if it is negative, it is virtual. You will need to calculate the magnification to determine if the image is enlarged or reduced, and upright or inverted. (b) Find the location of the image (in cm from the lens) formed by the lens when an object is placed P₂ = 23.5 cm in front of the lens. (Enter a negative distance if the image is in front of the lens.) 1175.5 x Apply the thin-lens equation. Recall that p > 0 if the object is in front of the lens. cm from the lens Choose the correct description of the image. (Select all that apply.) U virtual reduced inverted enlarged ✔real upright Recall the sign conventions for thin lenses. If the image location is positive, is real, and if it is negative, it is virtual. You will need to calculate the magnification to determine if the image is enlarged or reduced, and upright or inverted.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter26: Image Formation By Mirrors And Lenses
Section: Chapter Questions
Problem 70P
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A thin lens has a focal length of 25.0 cm.
(a) Find the location of the image (in cm from the lens) formed by the lens when an object is placed P₁ = 26.9 cm in front of the lens. (Enter a negative
distance if the image is in front of the lens.)
588.54
x
Apply the thin-lens equation. Recall that p > 0 if the object is in front of the lens. cm from the lens
Choose the correct description of the image. (Select all that apply.)
✔virtual
upright
real
reduced
inverted
enlarged
Recall the sign conventions for thin lenses. If the image location is positive, it is real, and if it is negative, it is virtual. You will need to calculate the
magnification to determine if the image is enlarged or reduced, and upright or inverted.
(b) Find the location of the image (in cm from the lens) formed by the lens when an object is placed P₂ = 23.5 cm in front of the lens. (Enter a negative
distance if the image is in front of the lens.)
1175.5
x
Apply the thin-lens equation. Recall that p > 0 if the object is in front of the lens. cm from the lens
Choose the correct description of the image. (Select all that apply.)
U
virtual
reduced
inverted
enlarged
✔real
upright
Recall the sign conventions for thin lenses. If the image location is positive, is real, and if it is negative, it is virtual. You will need to calculate the
magnification to determine if the image is enlarged or reduced, and upright or inverted.
Transcribed Image Text:A thin lens has a focal length of 25.0 cm. (a) Find the location of the image (in cm from the lens) formed by the lens when an object is placed P₁ = 26.9 cm in front of the lens. (Enter a negative distance if the image is in front of the lens.) 588.54 x Apply the thin-lens equation. Recall that p > 0 if the object is in front of the lens. cm from the lens Choose the correct description of the image. (Select all that apply.) ✔virtual upright real reduced inverted enlarged Recall the sign conventions for thin lenses. If the image location is positive, it is real, and if it is negative, it is virtual. You will need to calculate the magnification to determine if the image is enlarged or reduced, and upright or inverted. (b) Find the location of the image (in cm from the lens) formed by the lens when an object is placed P₂ = 23.5 cm in front of the lens. (Enter a negative distance if the image is in front of the lens.) 1175.5 x Apply the thin-lens equation. Recall that p > 0 if the object is in front of the lens. cm from the lens Choose the correct description of the image. (Select all that apply.) U virtual reduced inverted enlarged ✔real upright Recall the sign conventions for thin lenses. If the image location is positive, is real, and if it is negative, it is virtual. You will need to calculate the magnification to determine if the image is enlarged or reduced, and upright or inverted.
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