COLLEGE PHYSICS
2nd Edition
ISBN: 9781464196393
Author: Freedman
Publisher: MAC HIGHER
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Chapter 24, Problem 96QAP
To determine
The power reading glasses should be prescribed to treat this hyperopia.
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3. Bifocal lenses are prescribed for a patient, the components having focal length of
40cm & -300cm.
• What are the new and far points of the patients eye?
4. 45 year old man can see with his left eye between 25 → 300 cm and in his right
eye between 15cmo, a man has astigmatism at his left eye which requires a
lens of focal length + 0.5m at axis 120°. The patient requires magnification
glasses of focal length 0.25m. write the required prescription for this patient
•42 Figure 34-40 gives the lateral
magnification m of an object versus
the object distance p from a lens as
the object is moved along the cen-
tral axis of the lens through a range
of values for p out to p, = 20.0 cm.
What is the magnification of the ob-
ject when the object is 35 cm from
the lens?
E 0.5
p (cm)
Figure 34-40 Problem 42.
A diverging lens with /= -32.5 em is placed 14.0 en behind a converging
lens with -20.5 cm.
• Part A
Where will an object at infinity be focused? Determine the image distance from the second lens. Folow the sign conventions
Express your answer to two significant figures and include the appropriate units.
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Chapter 24 Solutions
COLLEGE PHYSICS
Ch. 24 - Prob. 1QAPCh. 24 - Prob. 2QAPCh. 24 - Prob. 3QAPCh. 24 - Prob. 4QAPCh. 24 - Prob. 5QAPCh. 24 - Prob. 6QAPCh. 24 - Prob. 7QAPCh. 24 - Prob. 8QAPCh. 24 - Prob. 9QAPCh. 24 - Prob. 10QAP
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- During LASIK eye surgery (laser-assisted in situ keratomileusis), the shape of the cornea is modified by vaporizing some of its material. If the surgery is performed to correct for nearsightedness, how does the cornea need to be reshaped?arrow_forwardThe accommodation limits for Nearsighted Nicks eyes are 18.0 cm and 80.0 cm. When he wears his glasses, he is able to see faraway objects clearly. At what minimum distance is he able to see objects clearly?arrow_forward•48 An object is moved along the central axis of a thin lens while the lateral magnification m is measured. Figure 34-43 gives m ver- sus object distance p out to p, = 8.0 cm. What is the magnification of the object when the object is 14.0 cm from the lens? p (cm)arrow_forward
- It has become common to replace the cataract-clouded lens of the eye with an internal lens. This intraocular lens can be chosen so that the person has perfect distant vision. Will the person be able to read without glasses? If the person was nearsighted, is the power of the intraocular lens greater or less than the removed lens?•arrow_forward34.40 • A diverging lens with a focal length of -48.0 cm forms a virtualimage 8.00 mm tall, 17.0 cm to the right of the lens. Determine theposition and size of the object. Is the image erect or inverted? Are theobject and image on the same side or opposite sides of the lens? Draw aprincipal-ray diagram for this situation.arrow_forward• Analyze the different types of mirrors and solve problems involving mirror equation. Differentiate the two types of lenses and solve problems involving the lens equation. OBJECTIVE Identify the parts of a concave and convex lenses and mirrors. Determine the location, orientation, size and type of image produced by a concave and convex lenses and mirrors. Solve problems involving mirrors and lenses. WHAT'S IN Light is one of the necessities of life on Earth. • Light is essential in the process of photosynthesis by plants. Light is also how reception and transmission of information about the things around us become possible. WHAT'S NEW Activity 1. Pinpoint Me? Directions: Identify the words described by the statements below and write your answer on the space before each number. 1. The law which states that the angle of incidence is equal to the angle of reflection. 2. The term used to describe the scattered reflection of light. 3. The center of the sphere to which the mirror is a part.…arrow_forward
- A camera with a 50.0 mm focal length lens is being used to photograph a person standing 8.00 m away. • How far from the lens must the film be? Provide the solution: cmarrow_forwardBifocal lenses are prescribed for a patient, the components having focal length of 40cm & -300cm. • What far points of the patients eye?arrow_forward•• An object is 15.0 cm in front of a converging lens that has a focal length equal to 15.0 cm. A diverging lens that has a focal length whose magnitude is equal to 15.0 cm is located 20.0 cm in back of the first. (a) Find the location of the final image and describe its properties (for example, real and inverted) and (b) draw a ray diagram to corroborate your answers to Part (a). SSM 55arrow_forward
- 00 MacBook Air 114 F8 F3 F4 F5 F6 F10 F12 & %23 * 24 08. darrow_forwardMath is not required, however you can use it to help with yoursolution. • You are only required to draw the position of the FINAL IMAGE given the system of lenses bellow. Use the following information: Focal length of biconvex lens=25 cm and focal length of the biconcave length =-10 cm Object 1.00 m 35 cm Hint: Find or estimatehow far the image from the lens is from the biconcave lens. Use thatto graph the optical rays between both lenses to get the FINAL IMAGE.arrow_forward• It has become common to replace the cataract-clouded lens of the eye with an internal lens. This intraocular lens can be chosen so that the person has perfect distant vision. Will the person be able to read without glasses? If the person was nearsighted, is the power of the intraocular lens greater or less than the removed lens?arrow_forward
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