Tutorials in Introductory Physics
1st Edition
ISBN: 9780130970695
Author: Peter S. Shaffer, Lillian C. McDermott
Publisher: Addison Wesley
expand_more
expand_more
format_list_bulleted
Concept explainers
Textbook Question
Chapter 24.5, Problem 2bTH
Treat the image produced by lens 1 as an object for lens 2. Use tie three principal rays to determine the location of the image of this object produced by lens 2.
Is this image produced by the pair of lenses real or virtual? Explain your reasoning.
Expert Solution & Answer
Want to see the full answer?
Check out a sample textbook solutionStudents have asked these similar questions
(a) The graph below was produced from the data of a thin lens. By analyzing it, what can we saysay about its characteristics, i.e., convergence/divergence and focal length? Explain your reasoning.(b) A thin lens is used to project an image onto a screen. If we cover the right half of the lens,what happens to the projected image? Explain.
1.Place your object at a distance equal to the focal length (f) of your diverging lens. Where is your image located? Describe the type of image formed based on size, orientation, and condition and provide a screenshot of your set-up.
2.Place your object at a distance less than the focal length (f) of your diverging lens. Where is your image located? Describe the type of image formed based on size, orientation, and condition and provide a screenshot of your set-up.
Determine the image distance d, for an object
d. = 6.100 cm from a diverging lens with radius of
curvature R = 4,880 cm and index of refraction 1.650.
Express your answer as a positive quantity.
object
%3D
cm
= I'pl
What is the magnification m of the object? Be sure to insert
the proper sign if needed.
m =
What is the nature of the image?
inverted and smaller
upright and smaller
inverted and larger
upright and larger
Chapter 24 Solutions
Tutorials in Introductory Physics
Ch. 24.1 - On the diagram, sketch what you would see on the...Ch. 24.1 - The small bulb is replaced by three longfilament...Ch. 24.1 - The three longfilament bulbs are replaced by a...Ch. 24.1 - Predict the size and shape of the shadow that will...Ch. 24.1 - Is it possible to place the bulb in another...Ch. 24.1 - Prob. 2cTHCh. 24.1 - Prob. 2dTHCh. 24.1 - Prob. 3aTHCh. 24.1 - A student is looking at the building shown at...Ch. 24.1 - Prob. 4aTH
Ch. 24.1 - Suppose that this student were walking through the...Ch. 24.2 - The top view diagrams at right were drawn by a...Ch. 24.2 - Draw a ray diagram to determine the location of...Ch. 24.2 - Describe how you could use a ray diagram to...Ch. 24.2 - A pencil is placed in front of a plane mirror as...Ch. 24.2 - Prob. 3bTHCh. 24.3 - Prob. 1aTHCh. 24.3 - A pin is placed in front of a semicylindrical...Ch. 24.3 - Prob. 1cTHCh. 24.3 - Prob. 2aTHCh. 24.3 - A very small, very bright bulb is placed for from...Ch. 24.4 - The following are top view diagrams of solid...Ch. 24.4 - The following are top view diagrams of solid...Ch. 24.4 - The following are top view diagrams of solid...Ch. 24.4 - The following are top view diagrams of solid...Ch. 24.4 - Prob. 2THCh. 24.4 - Prob. 3aTHCh. 24.4 - Prob. 3bTHCh. 24.4 - Is the image(s) of the nail real or virtual?...Ch. 24.5 - Suppose that the bulb is placed as shown. Using...Ch. 24.5 - Prob. 1bTHCh. 24.5 - Prob. 1cTHCh. 24.5 - Prob. 1dTHCh. 24.5 - Prob. 2aTHCh. 24.5 - Treat the image produced by lens 1 as an object...Ch. 24.5 - Repeat parts a andb for the case in which lens 2...Ch. 24.6 - Reproduced below is a side view diagram of the...Ch. 24.6 - In section III of the tutorial Magnification, you...Ch. 24.6 - Two thin convex lenses and an object are arranged...Ch. 24.6 - Prob. 3bTHCh. 24.6 - Two thin convex lenses and an object are arranged...Ch. 24.6 - Prob. 3dTHCh. 24.6 - Two thin convex lenses and an object are arranged...
Additional Science Textbook Solutions
Find more solutions based on key concepts
58. A sheet of glass is coated with a 500-nm-thick layer of oil (n = 1 .42).
a. For what visible wavelengths of...
College Physics: A Strategic Approach (3rd Edition)
If an object moves along a curved path, then it must be aaccelerating bacted on by a force cboth of these dnone...
Conceptual Integrated Science
A 50.0-g ball of copper has a net charge of 2.00C. What fraction of the copper's electrons has removed? (Each c...
University Physics Volume 2
If acceleration is proportional to the net force or is equal to net force.
Conceptual Physics (12th Edition)
21. In the equation , the gravitational potential energy is directly proportional to the distance of the object...
College Physics
Date: November 7, 2020. Headline: New Images Show Oceans on Extrasolar Planet.
Life in the Universe (4th Edition)
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.Similar questions
- The diagram below shows the situation described in the problem. The focal length of the lens is labeled f; the scale on the optical axis is in centimeters. Draw the three special rays, Ray1, Ray2, and Ray3 as described in the Tactics Box above, and label each ray accordingly. Draw the rays from the tip of the object to the center vertical axis of the lens. Do not draw the refracted rays. Draw the vectors for the incident rays starting at the tip of the object to the center vertical axis of the lens. The location and orientation of the vectors will be graded. Vectors: Ray3 Ray though center of lens Ray2 Ray through near focal point Rayl Ray parallel to axis Unlabeled vector Objectarrow_forwardProblem 5: A negative lens L1 is shown. It has a focal length of 100 mm. An object 40 mm in height is placed 170 mm from the lens as shown. Using ray trace rules, dray the three rays to locate the object to scale on the diagram. Locate the image and estimate q, Mr and hima graphically. Next calculate q, MT and himg: Compare to your diagram. Explain any discrepancies. (Drawing to scale, 1 block = 10 mm). 1 Block = 10 mmarrow_forwardA converging (concave) mirror with a focal length of 7 cm is held 4 cm from your face. a. Determine the image location. Insert your solution here: b. What is the magnification of the image? Use the formula belowarrow_forward
- You are imaging a pencil through a thin, converging lens as shown in the image below. If p (the distance from the object to the center of the thin lens) is 6.86m and the focal length of the thin lens is 1.4m, how far away (in meters) from the center of the thin lens is the real image located (the real image will be on the right-side of the lens in this particular example illustrated below)? Ray 1 Page Object focal point Converging lens Ray 2 Secondary Ray 3 Ray 1 Ray 3 Principal focal point Real imagearrow_forwardIn the two-lens system shown, f1 = -12.0 cm, f2 = 4.0 cm, and the lenses are a distance d = 5.0 cm apart. An object of height h = 1.0 cm is placed a distance l = 4.0 cm to the left of the diverging lens. a. Where is the final image formed by this system of lenses? Give your answer as a specific distance to the left or right of the converging lens. b. What are the height and orientation of the final image?arrow_forwardAfter focusing on the image of the bulb, measure the object distance, object height, image distance and image height. Then, state what type of image you observed and the image’s orientation. Choose at least 3 other objects to examine with a pinhole camera.arrow_forward
- Solve all part please.arrow_forwardAn insect 1.5 mm tall is placed 1.0 mm beyond the focal point of the objective lens of a compound microscope. The objective lens has a focal length of 12 mm, the eyepiece has a focal length of 26 mm. For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of A simple magnifier. Show Transcribed Text Part A Where is the image formed by the objective lens? Give your answer as the distance from the image to the lens. Express your answer with the appropriate units. s₁ = Submit Part B m₁ = μA Submit Value Request Answer What is the magnification, including the correct sign, of the objective image? 15. ΑΣΦ Request Answer Units Show Transcribed Text 2 ? ?arrow_forwardAnswer parts d and e pleasearrow_forward
- Hi, Parts a and b still come up as incorrect. Please check your answer. I only have one last attempt. No more attempts. Please, answer the question only if you are completely sure of the answer. Thank youarrow_forwardAn object, pointing upwards, is placed outside the focal point F2 of a thin diverging lens. A student is using the diagram shown above and the graphical method to predict the image of the arrow. To draw a principal ray, which direction should the student follow? O Draw a ray from point Q through F, to the lens, then bend it so it is horizontal. O Draw a horizontal ray from point Q to the lens, then bend it so it appears to diverge from F2. O Draw a ray from point P to any position on the lens, then bend it so it is horizontal. Draw a ray from point Q to the center of the lens, then bend it so it is horizontal.arrow_forwardSuppose you have a concave mirror as shown in the image below. If h = 1.6m is the height of an object (really the displacement of the top of the object from the axis) and h' = 4.05m is the height of the image, what is the magnitude of the transverse magnification (in units of meters)? Image Object Note: Do not explicitly include units in your answer (it is understood the unit is meter). Enter only a number. If you do enter a unit, your answer will be counted wrong.arrow_forward
arrow_back_ios
SEE MORE QUESTIONS
arrow_forward_ios
Recommended textbooks for you
- College PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningUniversity Physics (14th Edition)PhysicsISBN:9780133969290Author:Hugh D. Young, Roger A. FreedmanPublisher:PEARSONIntroduction To Quantum MechanicsPhysicsISBN:9781107189638Author:Griffiths, David J., Schroeter, Darrell F.Publisher:Cambridge University Press
- Physics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningLecture- Tutorials for Introductory AstronomyPhysicsISBN:9780321820464Author:Edward E. Prather, Tim P. Slater, Jeff P. Adams, Gina BrissendenPublisher:Addison-WesleyCollege Physics: A Strategic Approach (4th Editio...PhysicsISBN:9780134609034Author:Randall D. Knight (Professor Emeritus), Brian Jones, Stuart FieldPublisher:PEARSON
College Physics
Physics
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Cengage Learning
University Physics (14th Edition)
Physics
ISBN:9780133969290
Author:Hugh D. Young, Roger A. Freedman
Publisher:PEARSON
Introduction To Quantum Mechanics
Physics
ISBN:9781107189638
Author:Griffiths, David J., Schroeter, Darrell F.
Publisher:Cambridge University Press
Physics for Scientists and Engineers
Physics
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning
Lecture- Tutorials for Introductory Astronomy
Physics
ISBN:9780321820464
Author:Edward E. Prather, Tim P. Slater, Jeff P. Adams, Gina Brissenden
Publisher:Addison-Wesley
College Physics: A Strategic Approach (4th Editio...
Physics
ISBN:9780134609034
Author:Randall D. Knight (Professor Emeritus), Brian Jones, Stuart Field
Publisher:PEARSON
AP Physics 2 - Geometric Optics: Mirrors and Lenses - Intro Lesson; Author: N. German;https://www.youtube.com/watch?v=unT297HdZC0;License: Standard YouTube License, CC-BY