An object is placed to the left of a concave lens with focal length -10 cm such that the image produced by the lens is exactly half the size of the object. Instructions In a neat and organized fashion, write out a solution which includes the following: 1. A sketch of the physical situation with all given physical quantities clearly labeled. 2. Draw a ray diagram showing the object, the lens, and the image. 3. Determine the location of the object and the image. Clearly show all steps, starting from generalized equations. Explain your mathematical work in words. Your explanation should cover both what you did and the thought process behind why you did that. 4. Evaluate your answer to determine whether it is reasonable or not. Consider all aspects of your answer (the numerical value, sign, and units) in your evaluation.
An object is placed to the left of a concave lens with focal length -10 cm such that the image produced by the lens is exactly half the size of the object. Instructions In a neat and organized fashion, write out a solution which includes the following: 1. A sketch of the physical situation with all given physical quantities clearly labeled. 2. Draw a ray diagram showing the object, the lens, and the image. 3. Determine the location of the object and the image. Clearly show all steps, starting from generalized equations. Explain your mathematical work in words. Your explanation should cover both what you did and the thought process behind why you did that. 4. Evaluate your answer to determine whether it is reasonable or not. Consider all aspects of your answer (the numerical value, sign, and units) in your evaluation.
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter18: Refraction And Lenses
Section18.3: Applications Of Lenses
Problem 33SSC
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![Problem Description
An object is placed to the left of a concave lens with focal length -10 cm such that the image produced by the lens is exactly half the size of the object.
Instructions
In a neat and organized fashion, write out a solution which includes the following:
1. A sketch of the physical situation with all given physical quantities clearly labeled.
2. Draw a ray diagram showing the object, the lens, and the image.
3. Determine the location of the object and the image. Clearly show all steps, starting from generalized equations. Explain your mathematical work in words. Your explanation should cover both what you did and the
thought process behind why you did that.
4. Evaluate your answer to determine whether it is reasonable or not. Consider all aspects of your answer (the numerical value, sign, and units) in your evaluation.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F14cc5bce-36df-4df3-a561-47977886e65e%2Fb7adcb0c-5ad9-42e1-aaab-f9a4812070d3%2F53enayu_processed.png&w=3840&q=75)
Transcribed Image Text:Problem Description
An object is placed to the left of a concave lens with focal length -10 cm such that the image produced by the lens is exactly half the size of the object.
Instructions
In a neat and organized fashion, write out a solution which includes the following:
1. A sketch of the physical situation with all given physical quantities clearly labeled.
2. Draw a ray diagram showing the object, the lens, and the image.
3. Determine the location of the object and the image. Clearly show all steps, starting from generalized equations. Explain your mathematical work in words. Your explanation should cover both what you did and the
thought process behind why you did that.
4. Evaluate your answer to determine whether it is reasonable or not. Consider all aspects of your answer (the numerical value, sign, and units) in your evaluation.
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