Applied Physics (11th Edition)
11th Edition
ISBN: 9780134159386
Author: Dale Ewen, Neill Schurter, Erik Gundersen
Publisher: PEARSON
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Chapter 21, Problem 9RQ
Explain the difference between a concave and a convex mirror.
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Applied Physics (11th Edition)
Ch. 21.5 - Given so = 1.65 cm and st = 6.00 cm, find f.Ch. 21.5 - Given f = 15.0 cm and st = 3.00 cm, find so.Ch. 21.5 - Given st = 14.5 cm and f = 10.0 cm, find so.Ch. 21.5 - Given st = - 10.0 cm and f = - 5.00 cm, find so.Ch. 21.5 - Given so = 7.35 cm and st = 17.0 cm, find f.Ch. 21.5 - Given ht = 2.75 cm, ho = 4.50 cm, and st = 6.00...Ch. 21.5 - Given ho = 12.0 cm, st = 13.0 cm, and so = 25.0...Ch. 21.5 - Given ht = 3.50 cm. hs = 2.50 cm, and st = 15.5...Ch. 21.5 - If an object is 2.50 m tall and 8.60 m from a...Ch. 21.5 - An object 30.0 cm tall is located 10.5 cm from a...
Ch. 21.5 - Prob. 11PCh. 21.5 - An object 12 6 cm in front of a convex mirror...Ch. 21.5 - What is the height of an image in a truck mirror...Ch. 21.5 - A lift truck has a rear view mirror that is 0.76 m...Ch. 21.5 - Find the focal length of a convex mirror that...Ch. 21.5 - Find the focal length of a mirror that forms an...Ch. 21.5 - Find the focal length of a mirror that forms an...Ch. 21.5 - An image of a statue appears to be 11.5 cm behind...Ch. 21.5 - (a) What is the height of a figurine 7.33 cm in...Ch. 21.10 - Find the index of refraction of a medium for which...Ch. 21.10 - Prob. 2PCh. 21.10 - If the index of refraction of a liquid is 1.50,...Ch. 21.10 - The angle of incidence of light passing from air...Ch. 21.10 - If the critical angle of a liquid is 42.4, find...Ch. 21.10 - If the index of refraction of a substance is 2.45,...Ch. 21.10 - A converging lens has a focal length of 15.0 cm....Ch. 21.10 - An object 2.50 cm tall is placed 20.0 cm from a...Ch. 21.10 - The focal length of a lens is 5.00 cm. How far...Ch. 21.10 - If the distance from the lens in your eye to the...Ch. 21.10 - An object 5.00 cm tall is placed 15.0 cm from a...Ch. 21.10 - An object 4.50 cm tall is placed 18.0 cm from a...Ch. 21.10 - What are the size and location of an image...Ch. 21.10 - What are the size and location of an image...Ch. 21.10 - What is the focal length of a convex lens that...Ch. 21 - Stained glass is an example of a. a transparent...Ch. 21 - A virtual image may be a. larger than the object....Ch. 21 - A real image may be a. erect. b. shown on a...Ch. 21 - Explain the difference between diffusion and...Ch. 21 - Prob. 5RQCh. 21 - Prob. 6RQCh. 21 - Describe the type of images formed by plane...Ch. 21 - Explain the difference between real and virtual...Ch. 21 - Explain the difference between a concave and a...Ch. 21 - Explain the effect of spherical aberration.Ch. 21 - For a mirror of given focal length, how does the...Ch. 21 - For a given object distance from a mirror, how...Ch. 21 - The index of refraction depends on a. the focal...Ch. 21 - Snell's law involves a. the lens equation. b. the...Ch. 21 - Prob. 15RQCh. 21 - Give several examples of total internal...Ch. 21 - Prob. 17RQCh. 21 - Prob. 18RQCh. 21 - Prob. 19RQCh. 21 - What types of images are formed by diverging...Ch. 21 - What types of images are formed by converging...Ch. 21 - How do water waves affect the escape of light from...Ch. 21 - Explain why a fish under water appears to be at a...Ch. 21 - Does light always travel in a straight line?...Ch. 21 - Explain how total internal reflection allows light...Ch. 21 - Under what conditions will a converging lens form...Ch. 21 - Under what conditions will a converging lens form...Ch. 21 - Under what conditions will a diverging lens form a...Ch. 21 - Using 1f=1s0+1si, s0 = 3.50 cm, and si = 7.25 cm,...Ch. 21 - Using 1f=1s0+1si, s0 = 8.50 cm, and f = 25.0 cm,...Ch. 21 - Using M=hih0=sis0, h0 = 6.50 cm, si = 7.50 cm, and...Ch. 21 - If an object is 3.75 m tall and 7.35 m from a...Ch. 21 - An object 43.0 cm tall is located 23.4 cm from a...Ch. 21 - Prob. 6RPCh. 21 - The angle of incidence of light passing from air...Ch. 21 - If the index of refraction of a liquid is 1.44,...Ch. 21 - If the critical angle of a liquid is 45.6, find...Ch. 21 - If the index of refraction of a substance is 1.50,...Ch. 21 - A converging lens has a focal length of 12.0 cm....Ch. 21 - An object 4.50 cm tall is placed 20.0 cm from a...Ch. 21 - The focal length of a lens is 4.00 cm. How far...Ch. 21 - What is the focal length of a convex lens that...Ch. 21 - What is the focal length of a mirror that forms an...Ch. 21 - What are the size and location of an image...Ch. 21 - What is the speed of light passing through a...Ch. 21 - Prob. 18RPCh. 21 - Find the focal length of a concave mirror with an...Ch. 21 - Prob. 20RPCh. 21 - Tamera uses a concave mirror when applying makeup....Ch. 21 - A convex security mirror has a radius of curvature...Ch. 21 - Prob. 3ACCh. 21 - Diamonds are cut to take advantage of internal...Ch. 21 - A photographer uses a 60.0-mm lens. (a) How far...
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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
- A light bulb is placed 10 cm from a plane mirror, which faces a convex mirror of radius of curvature 8 cm. The plane mirror is located at a distance of 30 cm from the vertex of the convex mirror. Find the location of two images in the convex mirror. Are there other images? If so, where are they located?arrow_forwardTwo concave mirrors are placed facing each other. One of them has a small hole in the middle. A penny is placed on the bottom mirror (see the following figure). When you look from the side, a real image of the penny is observed above the hole. Explain how that could happen.arrow_forwardA person walks into a room that has two flat mirrors on opposite walls. File mirrors produce multiple images of the person. Consider only the images formed in the mirror on the left. When the person is 2.00 m from the mirror on the left wall and 4.00 m from the mirror on the right wall, find the distance from the person to the first three images seen in the mirror on the left wall.arrow_forward
- A concave mirror has a radius of curvature of 60.0 cm. Calculate the image position and magnification of an object placed in front of the mirror at distances of (a) 90.0 cm and (b) 20.0 cm. (c) Draw ray diagrams to obtain the image characteristics in each case.arrow_forwardA dentist uses a spherical mirror to examine a tooth. The tooth is 1.00 cm in front of the mirror, and the image is formed 10.0 cm behind the mirror. Determine (a) the mirrors radius of curvature and (b) the magnification of the image.arrow_forwardA 1.80-m-tall person stands 9.00 m in front of a large, concave spherical mirror having a radius of curvature of 3.00 m. Determine (a) the mirrors focal length, (b) the image distance, and (c) the magnification. (d) Is the image real or virtual? (e) Is the image upright or inverted?arrow_forward
- An object is placed 25.0 cm from the surface of a convex mirror and an image is formed. The same object is placed 20.0 cm in front of a plane mirror and. again, an image is formed. Suppose in each ease the object is located at x = 0 and the mirrors lie along the positive x axis. If the images formed in the two mirrors lie at the same x coordinate, determine the radius of curvature of the convex mirror.arrow_forwardIf Joshs face is 30.0 cm in front of a concave shaving mirror creating an upright image 1.50 times as large as the object, what is the mirrors focal length? (a) 12.0 cm (b) 20.0 cm (c) 70.0 cm (d) 90.0 cm (e) none of those answersarrow_forwardIf you wish to see your entire body in a flat mirror (from head to toe), how tall should the mirror be? Does its size depend upon your distance away from the mirror? Provide a sketch.arrow_forward
- By using more than one flat mirror, construct a ray diagram showing how to create an inverted image.arrow_forwardWhich is true of a virtual image? (7.4) (a) It is always formed by a convex lens. (b) It can be formed on a screen. (c) It is formed on the object side of a lens. (d) It cannot be formed by a concave lens.arrow_forwardYou are looking for a mirror so that you can see a four- fold magnified virtual image of an object when the object is placed 5 cm from the vertex of the mirror. What kind of mirror you will need? What should be the radius of curvature of the mirror?arrow_forward
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