Problem 1Q: Figure 34-25 shows a fish and a fish stalker in water. a Does the stalker see the fish in the... Problem 2Q: In Fig. 34-26, stick figure O stands in front of a spherical mirror that is mounted within the boxed... Problem 3Q: Figure 34-27 is an overhead view of a mirror maze based on floor sections that are equilateral... Problem 4Q: A penguin waddles along the central axis of a concave mirror, from the focal point to an effectively... Problem 5Q: When a T. rex pursues a jeep in the movie Jurassic Park, we see a reflected image of the T. rex via... Problem 6Q: An object is placed against the center of a concave mirror and then moved along the central axis... Problem 7Q: The table details six variations of the basic arrangement of two thin lenses represented in Fig.... Problem 8Q: An object is placed against the center of a converging lens and then moved along the central axis... Problem 9Q: Figure 34-30 shows four thin lenses, all of the same material, with sides that either are flat or... Problem 10Q: In Fig. 34-26, stick figure O stands in front of a thin, symmetric lens that is mounted within the... Problem 11Q: Figure 34-31 shows a coordinate system in front of a flat mirror, with the x axis perpendicular to... Problem 1P: You look through a camera towards an image of a hummingbird in a plane mirror. The camera is 4.3 m... Problem 2P: ILW A moth at about eye level is 10 cm in front of a plane mirror; you are behind the moth, 30 cm... Problem 3P: In Fig. 34-32, an isotropic point source of light S is positioned at distance d from a viewing... Problem 4P: Figure 34-33 shows an overhead view of a corridor with a plane mirror M mounted at one end. A... Problem 5P: SSM WWW Figure 34-34 shows a small lightbulb suspended at distance d1 = 250 cm above the surface of... Problem 6P: An object is moved along the central axis of a spherical mirror while the lateral magnification m of... Problem 7P: A concave shaving mirror has a radius of curvature of 35.0 cm. It is positioned so that the upright... Problem 8P: An object is placed against the center of a spherical mirror and then moved 70 cm from it along the... Problem 9P: 9 through 16 GO 12 SSM 9, 11, 13 Spherical mirrors. Object O stands on the central axis of a... Problem 10P: 9 through 16 GO 12 SSM 9, 11, 13 Spherical mirrors. Object O stands on the central axis of a... Problem 11P: 9 through 16 GO 12 SSM 9, 11, 13 Spherical mirrors. Object O stands on the central axis of a... Problem 12P: 9 through 16 GO 12 SSM 9, 11, 13 Spherical mirrors. Object O stands on the central axis of a... Problem 13P: 9 through 16 GO 12 SSM 9, 11, 13 Spherical mirrors. Object O stands on the central axis of a... Problem 14P: 9 through 16 GO 12 SSM 9, 11, 13 Spherical mirrors. Object O stands on the central axis of a... Problem 15P: 9 through 16 GO 12 SSM 9, 11, 13 Spherical mirrors. Object O stands on the central axis of a... Problem 16P: 9 through 16 GO 12 SSM 9, 11, 13 Spherical mirrors. Object O stands on the central axis of a... Problem 17P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 18P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 19P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 20P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 21P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 22P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 23P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 24P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 25P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 26P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 27P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 28P: 17 through 29 GO 22SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 29P: 17 through 29 GO 22 SSM 23, 29 More mirrors. Object O stands on the central axis of a spherical or... Problem 30P: GO Figure 34-37 gives the lateral magnification m of an object versus the object distance p from a... Problem 31P: a A luminous point is moving at speed vo towards a spherical mirror with radius of curvature r,... Problem 32P: 32 through 38 GO 37, 38 SSM 33, 35 Spherical refracting surfaces. An object O stands on the central... Problem 33P: 32 through 38 GO 37, 38 SSM 33, 35 Spherical refracting surfaces. An object O stands on the central... Problem 34P: 32 through 38 GO 37, 38 SSM 33, 35 Spherical refracting surfaces. An object O stands on the central... Problem 35P: 32 through 38 GO 37, 38 SSM 33, 35 Spherical refracting surfaces. An object O stands on the central... Problem 36P: 32 through 38 GO 37, 38 SSM 33, 35 Spherical refracting surfaces. An object O stands on the central... Problem 37P: 32 through 38 GO 37, 38 SSM 33, 35 Spherical refracting surfaces. An object O stands on the central... Problem 38P: 32 through 38 GO 37, 38 SSM 33, 35 Spherical refracting surfaces. An object O stands on the central... Problem 39P: In Fig. 34-38, a beam of parallel light rays from a laser is incident on a solid transparent sphere... Problem 40P: A glass sphere has radius R = 5.0 cm and index of refraction 1.6. A paperweight is constructed by... Problem 41P: A lens is made of glass having an index of refraction of 1.5. One side of the lens is flat, and the... Problem 42P: Figure 34-40 gives the lateral magnification m of an object versus the object distance p from a lens... Problem 43P: A movie camera with a single lens of focal length 75 mm takes a picture of a person standing 27 m... Problem 44P: An object is placed against the center of a thin lens and then moved away from it along the central... Problem 45P: You produce an image of the Sun on a screen, using a thin lens whose focal length is 20.0 cm. What... Problem 46P: An object is placed against the center of a thin lens and then moved 70 cm from it along the central... Problem 47P: SSM WWW A double-convex lens is to be made of glass with an index of refraction of 1.5. One surface... Problem 48P: An object is moved along the central axis of a thin lens while the lateral magnification m is... Problem 49P: SSM An illuminated slide is held 44 cm from a screen. How far from the slide must a lens of focal... Problem 50P: 50 through 57 GO 55, 57 SSM 53 Thin lenses. Object O stands on the central axis of a thin symmetric... Problem 51P: 50 through 57 GO 55, 57 SSM 53 Thin lenses. Object O stands on the central axis of a thin symmetric... Problem 52P: 50 through 57 GO 55, 57 SSM 53 Thin lenses. Object O stands on the central axis of a thin symmetric... Problem 53P: 50 through 57 GO 55, 57 SSM 53 Thin lenses. Object O stands on the central axis of a thin symmetric... Problem 54P: 50 through 57 GO 55, 57 SSM 53 Thin lenses. Object O stands on the central axis of a thin symmetric... Problem 55P: 50 through 57 GO 55, 57 SSM 53 Thin lenses. Object O stands on the central axis of a thin symmetric... Problem 56P: 50 through 57 GO 55, 57 SSM 53 Thin lenses. Object O stands on the central axis of a thin symmetric... Problem 57P: 50 through 57 GO 55, 57 SSM 53 Thin lenses. Object O stands on the central axis of a thin symmetric... Problem 58P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 59P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 60P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 61P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 62P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 63P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 64P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 65P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 66P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 67P: 58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the... Problem 68P: In Fig. 34-44, a real inverted image I of an object O is formed by a particular lens not shown; the... Problem 69P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 70P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 71P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 72P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 73P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 74P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 75P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 76P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 77P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 78P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 79P: 69 through 79 GO 76, 78 SSM 75, 77 More lenses. Object O stands on the central axis of a thin... Problem 80P: 80 through 87 GO 80, 87 SSM WWW 83 Two-lens systems. In Fig. 34-45, stick figure O the object stands... Problem 81P: 80 through 87 GO 80, 87 SSM WWW 83 Two-lens systems. In Fig. 34-45, stick figure O the object stands... Problem 82P: 80 through 87 GO 80, 87 SSM WWW 83 Two-lens systems. In Fig. 34-45, stick figure O the object stands... Problem 83P: 80 through 87 GO 80, 87 SSM WWW 83 Two-lens systems. In Fig. 34-45, stick figure O the object stands... Problem 84P: 80 through 87 GO 80, 87 SSM WWW 83 Two-lens systems. In Fig. 34-45, stick figure O the object stands... Problem 85P: 80 through 87 GO 80, 87 SSM WWW 83 Two-lens systems. In Fig. 34-45, stick figure O the object stands... Problem 86P: 80 through 87 GO 80, 87 SSM WWW 83 Two-lens systems. In Fig. 34-45, stick figure O the object stands... Problem 87P: 80 through 87 GO 80, 87 SSM WWW 83 Two-lens systems. In Fig. 34-45, stick figure O the object stands... Problem 88P: If the angular magnification of an astronomical telescope is 36 and the diameter of the objective is... Problem 89P: SSM In a microscope of the type shown in the Fig. 34-20, the focal length of the objective is 4.00... Problem 90P: Figure 34-46a shows the basic structure of an old film camera. A lens can be moved forward or back... Problem 91P: SSM Figure 34-47a shows the basic structure of a human eye. Light refracts into the eye through the... Problem 92P: An object is 10.0 mm from the objective of a certain compound microscope. The lenses are 300 mm... Problem 93P: Someone with a near point Pn of 25 cm views a thimble through a simple magnifying lens of focal... Problem 94P: An object is placed against the center of a spherical mirror and then moved 70 cm from it along the... Problem 95P: 95 through 100 GO 95, 96, 99 Three-lens systems. In Fig. 34-49, stick figure O the object stands on... Problem 96P: 95 through 100 GO 95, 96, 99 Three-lens systems. In Fig. 34-49, stick figure O the object stands on... Problem 97P: 95 through 100 GO 95, 96, 99 Three-lens systems. In Fig. 34-49, stick figure O the object stands on... Problem 98P: 95 through 100 GO 95, 96, 99 Three-lens systems. In Fig. 34-49, stick figure O the object stands on... Problem 99P: 95 through 100 GO 95, 96, 99 Three-lens systems. In Fig. 34-49, stick figure O the object stands on... Problem 100P: 95 through 100 GO 95, 96, 99 Three-lens systems. In Fig. 34-49, stick figure O the object stands on... Problem 101P: SSM The formula 1/p 1/i = 1/f is called the Gaussian form of the thin-lens formula. Another form of... Problem 102P: Figure 34-50a is an overhead view of two vertical plane mirrors with an object O placed between... Problem 103P: SSM Two thin lenses of focal lengths f1 and f2 are in contact and share the same central axis. Show... Problem 104P: Two plane mirrors are placed parallel to each other and 40 cm apart. An object is placed 10 cm from... Problem 105P: In Fig. 34-51, a box is somewhere at the left, on the central axis of the thin converging lens. The... Problem 106P: In Fig. 34-52, an object is placed in front of a converging lens at a distance equal to twice the... Problem 107P: SSM A fruit fly of height H sits in front of lens 1 on the central axis through the lens. The lens... Problem 108P: You grind the lenses shown in Fig. 34-53 from flat glass disks n = 1.5 using a machine that can... Problem 109P: In Fig. 34-54, a fish watcher at point P watches a fish through a glass wall of a fish tank. The... Problem 110P: A goldfish in a spherical fish bowl of radius R is at the level of the center C of the bowl and at... Problem 111P: Figure 34-56 shows a beam expander made with two coaxial converging lenses of focal lengths f1 and... Problem 112P: You look down at a coin that lies at the bottom of a pool of liquid of depth d and index of... Problem 113P: A pinhole camera has the hole a distance 12 cm from the film plane, which is a rectangle of height... Problem 114P: Light travels from point A to point B via reflection at point O on the surface of a mirror. Without... Problem 115P: A point object is 10 cm away from a plane mirror, and the eye of an observer with pupil diameter 5.0... Problem 116P: Show that the distance between an object and its real image formed by a thin converging lens is... Problem 117P: A luminous object and a screen are a fixed distance D apart. a Show that a converging lens of focal... Problem 118P: An eraser of height 1.0 cm is placed 10.0 cm in front of a two-lens system. Lens 1 nearer the eraser... Problem 119P: A peanut is placed 40 cm in front of a two-lens system: lens 1 nearer the peanut has focal length f1... Problem 120P: A coin is placed 20 cm in front of a two-lens system. Lens 1 nearer the coin has focal length f1 =... Problem 121P: An object is 20 cm to the left of a thin diverging lens that has a 30 cm focal length. a What is the... Problem 122P: In Fig 34-58 a pinecone is at distance p1 = 1.0 m in front of a lens of focal length f1 = 0.50 m; a... Problem 123P: One end of a long glass rod n = 1.5 is a convex surface of radius 6.0 cm. An object is located in... Problem 124P: A short straight object of length L lies along the central axis of a spherical mirror, a distance p... Problem 125P: Prove that if a plane mirror is rotated through an angle , the reflected beam is rotated through an... Problem 126P: An object is 30.0 cm from a spherical mirror, along the mirrors central axis. The mirror produces an... Problem 127P: A concave mirror has a radius of curvature of 24 cm. How far is an object from the mirror if the... Problem 128P: A pepper seed is placed in front of a lens. The lateral magnification of the seed is 0.300. The... Problem 129P: The equation 1/p 1/i = 2/r for spherical mirrors is an approximation that is valid if the image is... Problem 130P: A small cup of green tea is positioned on the central axis of a spherical mirror. The lateral... Problem 131P: A 20-mm-thick layer of water n = 1.33 floats on a 40-mm-thick layer of carbon tetrachloride n = 1.46... Problem 132P: A millipede sits 1.0 m in front of the nearest part of the surface of a shiny sphere of diameter... Problem 133P: a Show that if the object O in Fig. 34-19c is moved from focal point F1 toward the observers eye,... Problem 134P: Isaac Newton, having convinced himself erroneously as it turned out that chromatic aberration is an... Problem 135P: A narrow beam of parallel light rays is incident on a glass sphere from the left, directed toward... Problem 136P: A corner reflector, much used in optical, microwave, and other applications, consists of three plane... Problem 137P: A cheese enchilada is 4.00 cm in front of a converging lens. The magnification of the enchilada is... Problem 138P: A grasshopper hops to a point on the central axis of a spherical mirror. The absolute magnitude of... Problem 139P: In Fig. 34-60, a sand grain is 3.00 cm from thin lens 1, on the central axis through the two... Problem 140P: Suppose the farthest distance a person can see without visual aid is 50 cm. a What is the focal... Problem 141P: A simple magnifier of focal length f is placed near the eye of someone whose near point Pn is 25 cm.... format_list_bulleted