
Concept explainers
A zoom lens system is a combination of lenses that produces a variable magnification of a fixed object as it maintains a fixed image position. The magnification is varied by moving one or more lenses along the axis. Multiple lenses are used in practice, but the effect of zooming in on an object can be demonstrated with a simple two-lens system. An object, two converging lenses, and a screen are mounted on an optical bench. Lens 1, which is to the right of the object, has a focal length of f1 = 5.00 cm, and lens 2, which is to the right of the first lens, has a focal length of f2 = 10.0 cm. The screen is to the right of lens 2. Initially, an object is situated at a distance of 7.50 cm to the left of lens 1, and the image formed on the screen has a magnification of +1.00. (a) Find the distance between the object and the screen. (b) Both lenses are now moved along their common axis while the object and the screen maintain fixed positions until the image formed on the screen has a magnification of +3.00. Find the displacement of each lens from its initial position in part (a). (c) Can the lenses be displaced in more than one way?
(a)

The distance between the object and the screen.
Answer to Problem 94CP
The distance between the object and the screen is
Explanation of Solution
Given info: The focal length of the left and right lenses are
Write the expression of thin lens equation for lens 1.
Here,
Substitute
Write the expression for magnification.
Substitute
Write the expression of magnification for a combination of two lenses.
Substitute
Write the expression to calculate the magnification for lens 2.
Substitute
Write the expression of thin lens equation for lens 2.
Here,
Substitute
Substitute
The distance between the object and the screen is,
Substitute
Thus, the distance between the object and the screen is
Conclusion:
Therefore, the distance between the object and the screen is
(b)

The displacement of each lens from its initial position.
Answer to Problem 94CP
The displacement of each lens from its initial position is
Explanation of Solution
Given info: The focal length of the left and right lenses are
Write the expression of thin lens equation for lens 1.
Here,
Substitute
Write the expression of magnification for lens 1.
Substitute
Write the expression of magnification for the combination of lenses.
Substitute
Write the expression to calculate the magnification of lens 2.
Substitute
Write the expression of lens equation for lens 2.
Substitute
Substitute
The distance between the object and the screen is,
Substitute
Solve the above quadratic equation to find the value of
When the value of
The displacement of object is,
Substitute
The displacement of the image is,
When the value of
The displacement of object is,
Substitute
The displacement of the image is,
Thus, the displacement of each lens from its initial position is
Conclusion:
Therefore, the displacement of each lens from its initial position is
(c)

Whether the lens can be displaced by more than one way.
Answer to Problem 94CP
It is possible to displace the lens in more than one way.
Explanation of Solution
Given info: The focal length of the left and right lenses are
Yes the lens can be displaced in more than one way.
The first lens can be displaced
Another way is, the first lens can be moved
Thus, it is possible to displace the lens in more than one way.
Conclusion:
Therefore, it is possible to displace the lens in more than one way.
Want to see more full solutions like this?
Chapter 36 Solutions
Physics for Scientists and Engineers with Modern Physics, Technology Update
- No Aiarrow_forwardCan someone help mearrow_forwardNeed help on the following questions on biomechanics. (Please refer to images below)A gymnast weighing 68 kg attempts a handstand using only one arm. He plants his handat an angle resulting in the reaction force shown.A) Find the resultant force (acting on the Center of Mass)B) Find the resultant moment (acting on the Center of Mass)C) Draw the resultant force and moment about the center of mass on the figure below. Will the gymnast rotate, translate, or both? And in which direction?arrow_forward
- Please help me on the following question (Please refer to image below)An Olympic lifter (m = 103kg) is holding a lift with a mass of 350 kg. The barexerts a purely vertical force that is equally distributed between both hands. Each arm has amass of 9 kg, are 0.8m long and form a 40° angle with the horizontal. The CoM for each armis 0.5 m from hand. Assuming the lifter is facing us in the diagram below, his right deltoidinserts 14cm from the shoulder at an angle of 13° counter-clockwise from the humerus.A) You are interested in calculating the force in the right deltoid. Draw a free body diagramof the right arm including the external forces, joint reaction forces, a coordinate system andstate your assumptions.B) Find the force exerted by the right deltoidC) Find the shoulder joint contact force. Report your answer using the magnitude and directionof the shoulder force vector.arrow_forwardI need help with part B. I cant seem to get the correct answer. Please walk me through what youre doing to get to the answer and what that could bearrow_forwardQuestion 6: Chlorine is widely used to purify municipal water supplies and to treat swimming pool waters. Suppose that the volume of a particular sample of Cl₂ gas is 8.70 L at 895 torr and 24°C. (a) How many grams of Cl₂ are in the sample? ⚫ Atomic mass of CI = 35.453 g/mol • Molar mass of Cl₂ = 2 x 35.453 = 70.906 g/mol Solution: Use the Ideal Gas Law: Step 1: Convert Given Values • Pressure: P = 895 torr → atm PV= = nRT 1 P = 895 × = 1.1789 atm 760 • Temperature: Convert to Kelvin: T24273.15 = 297.15 K • Gas constant: R = 0.0821 L atm/mol. K Volume: V = 8.70 L Step 2: Solve for n . PV n = RT n = (1.1789)(8.70) (0.0821)(297.15) 10.25 n = = 0.420 mol 24.405 Step 3: Calculate Mass of Cl₂ Final Answer: 29.78 g of Cl₂. mass nx M mass= (0.420)(70.906) mass= 29.78 garrow_forward
- Principles of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage Learning
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage LearningPhysics for Scientists and Engineers, Technology ...PhysicsISBN:9781305116399Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningGlencoe Physics: Principles and Problems, Student...PhysicsISBN:9780078807213Author:Paul W. ZitzewitzPublisher:Glencoe/McGraw-Hill





