Solutions for FUND.OF PHYSICS(LL)-PRINT COMP-W/ACCESS
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...Browse All Chapters of This Textbook
Chapter 1 - MeasurementChapter 2 - Motion Along A Straight LineChapter 3 - VectorsChapter 4 - Motion In Two And Three DimensionsChapter 5 - Force And Motion - IChapter 6 - Force And Motion - IiChapter 7 - Kinetic Energy And WorkChapter 8 - Potential Energy And Conservation Of EnergyChapter 9 - Center Of Mass And Linear MomentumChapter 10 - Rotation
Chapter 11 - Rolling, Torque And Angular MomentumChapter 12 - Equillibrium And ElasticityChapter 13 - GravitationChapter 14 - FluidsChapter 15 - OscillationsChapter 16 - Waves - IChapter 17 - Waves - IiChapter 18 - Temperature Heat And The First Law Of ThermodynamicsChapter 19 - Kinetic Theory Of GasesChapter 20 - Entropy And The Second Law Of ThermodynamicsChapter 21 - Coulomb's LawChapter 22 - Electric FieldsChapter 23 - Gauss' LawChapter 24 - Electric PotentialChapter 25 - CapacitanceChapter 26 - Current And ResistanceChapter 27 - CircuitsChapter 28 - Magnetic FieldsChapter 29 - Magnetic Fields Due To CurrentsChapter 30 - Induction And InductanceChapter 31 - Electromagnetic Oscillations And Alternating CurrentChapter 32 - Maxwell's Equations; Magnetism Of MatterChapter 33 - Electromagnetic WavesChapter 34 - ImagesChapter 35 - InterferenceChapter 36 - DiffractionChapter 37 - RelativityChapter 38 - Photons And Matter WavesChapter 39 - More About Matter WavesChapter 40 - All About AtomsChapter 41 - Conduction Of Electricity In SolidsChapter 42 - Nuclear PhysicsChapter 43 - Energy From The NucleusChapter 44 - Quarks, Leptons And The Big Bang
Sample Solutions for this Textbook
We offer sample solutions for FUND.OF PHYSICS(LL)-PRINT COMP-W/ACCESS homework problems. See examples below:
Given: Radius of the earth: 6.37×106m. Calculations: a) The circumference of sphere is 2πR. So, the...Chapter 2, Problem 1QChapter 3, Problem 1QChapter 4, Problem 1QChapter 5, Problem 1QChapter 6, Problem 1QChapter 7, Problem 1QChapter 8, Problem 1QChapter 9, Problem 1Q
Chapter 10, Problem 1QChapter 11, Problem 1QChapter 12, Problem 1QChapter 13, Problem 1QChapter 14, Problem 1QChapter 15, Problem 1Q1) Concept: We can use the concept of the equation of transverse wave and speed of a travelling...1) Concept: The rate of energy transported by a travelling wave depends on the intensity of the wave...Chapter 18, Problem 1QChapter 19, Problem 1QChapter 20, Problem 1QChapter 21, Problem 1QChapter 22, Problem 1QChapter 23, Problem 1QChapter 24, Problem 1QChapter 25, Problem 1QChapter 26, Problem 1QChapter 27, Problem 1Q1) Concept: We can use the right hand rule to find the direction of force. For the possible...1) Concept: We can find the net magnetic field at the center of each circuit using the formula for...Chapter 30, Problem 1QChapter 31, Problem 1QChapter 32, Problem 1Q1) Concept: Analyzing the given equation, we can find the direction of the electromagnetic wave and...Chapter 34, Problem 1QChapter 35, Problem 1QChapter 36, Problem 1QChapter 37, Problem 1Q1) Concept: We can write the formula for energy of photon in terms of momentum. From this, we can...1) Concept: Using the formula for ground state energy of an electron in one dimensional infinite...For a given quantum number n there are n possible values of l, ranging from 0 to n −1. For each l...Explanations 1) Concept An isolated atom can exist in only a discrete set of energy levels. As atoms...Given: i. A radionuclide 196I decays by emitting an electron. ii. Refer to Fig 42.6 of the textbook...Given: i. A nuclear reaction 235U + n 132Sn + + 3n . ii. Refer to Appendix F and G of the textbook...Given: The list of conservation laws that are given is: a) Energy b) Angular momentum c) Charge d)...
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