Solutions for Fundamentals of Physics Extended 10e Binder Ready Version + WileyPLUS Registration Card
Problem 1Q:
Figure 22-22 shows three arrangements of electric held lines. In each arrangement, a proton is...Problem 2Q:
Figure 22-23 shows two square arrays of charged particles. The squares, which are centered on point...Problem 3Q:
In Fig. 22-24, two particles of charge q are arranged symmetrically about the y axis; each produces...Problem 4Q:
Figure 22-25 shows four situations in which four charged particles are evenly spaced to the left and...Problem 5Q:
Figure 22-26 shows two charged particles fixed in place on an axis, a Where on the axis other than...Problem 6Q:
In Fig. 22-27, two identical circular nonconducting rings are centered on the same line with their...Problem 7Q:
The potential energies associated with four orientations of an electric dipole in an electric field...Problem 8Q:
a In Checkpoint 4, if the dipole rotates from orientation 1 to orientation 2, is the work done on...Problem 9Q:
Figure 22-28 shows two disks and a flat ring, each with the same uniform charge Q. Rank the objects...Problem 10Q:
In Fig. 22-29, an electron e travels through a small hole in plate A and then toward plate B. A...Problem 11Q:
In Fig. 22-30a, a circular plastic rod with uniform charge Q produces an electric field of magnitude...Problem 12Q:
When three electric dipoles ire near each other, they each experience the electric field of the...Problem 13Q:
Figure 22-32 shows three rods, each with the same charge Q spread uniformly along its length. Rods a...Problem 14Q:
Figure 22-33 shows five protons that are launched in a uniform electric field E; the magnitude and...Problem 1P:
Sketch qualitatively the electric field lines both between and outside two concentric conducting...Problem 2P:
In Fig. 22-34 the electric field lines on the left have twice the separation of those on the right....Problem 3P:
SSM The nucleus of a plutonium-239 atom contains 94 protons. Assume that the nucleus in a sphere...Problem 4P:
Two charged particles are attached to an x axis: Particle 1 of charge 2.00 107 C is at position x =...Problem 5P:
SSM A charged particle produces an electric Held with a magnitude of 2.0 N/C at a point that is 50...Problem 6P:
What is the magnitude of a point charge that would create an electric field of 1.00 N/C at points...Problem 7P:
SSM ILW WWW In Fig. 22-35, the four particles form a square of edge length a = 5.00 cm and have...Problem 8P:
GO In Fig. 22-36, the four particles are fixed in place and have charges q1 = q2 = 5e, q3 = 3e, and...Problem 9P:
GO Figure 22-37 shows two charged particles on an x axis: q = 3.20 1019 C at x = 3.00 m and q =...Problem 10P:
GO Figure 22-38a shows two charged particles fixed in place on an x axis with separation L. The...Problem 11P:
SSM Two charged particles are fixed to x axis: Particle 1 of charge q1 = 2.1 108 C is at position x...Problem 12P:
GO Figure 22-39 shows an uneven arrangement of electrons e and protons p on a circular arc of radius...Problem 13P:
GO Figure 22-40 shows a proton on the central axis through a disk with a uniform charge density due...Problem 14P:
In Fig. 22-41, particle 1 of charge q1 = 5.00q and particle 2 of charge q2 = 2.00q are fixed to an x...Problem 15P:
In Fig. 22-42, the three particles are fixed in place and have charge q1 = q2 = e and q3 = 2e....Problem 16P:
Figure 22-43 shows a plastic ring of radius R = 50.0cm. Two small charged beads are on the ring:...Problem 17P:
Two charged beads are on the plastic ring in Fig. 22-44a. Bead 2, which is not shown, is fixed in...Problem 18P:
The electric field of an electric dipole along the dipole axis is approximated by Eqs. 22-8 and...Problem 19P:
Figure 22-45 shows an electric dipole. What are the a magnitude and b direction relative to the...Problem 20P:
Equations 22-8 and 22-9 are approximations of the magnitude of the electric field of an electric...Problem 21P:
SSM Electric quadrupole. Figure 22-46 shows a generic electric quadrupole. It consists of two...Problem 22P:
Density, density, density. a A charge 300e is uniformly distributed along a circular arc of radius...Problem 23P:
Figure 22-47 shows two parallel nonconducting rings with their central axes along a common line....Problem 24P:
A thin nonconducting rod with a uniform distribution of positive charge Q is bent into a complete...Problem 25P:
Figure 22-49 shows three circular arcs centered on the origin of a coordinate system. On each arc,...Problem 26P:
GO ILW In Fig. 22-50, a thin glass rod forms a semicircle of radius r = 5.00 cm. Charge is uniformly...Problem 27P:
GO In Fig, 22-51, two curved plastic rods, one of charge q and the other of charge q, form a circle...Problem 28P:
Charge is uniformly distributed around a ring of radius R = 2.40 cm, and the resulting electric...Problem 29P:
GO Figure 22-52a shows a nonconducting rod with a uniformly distributed charge Q. The rod forms a...Problem 30P:
GO Figure 22-53 shows two concentric rings, of radii R and R = 3.00R, that lie on the same plane....Problem 31P:
SSM ILW WWW In Fig. 22-54, a nonconducting rod of length L = 8.15 cm has a charge q = 4.23 fC...Problem 32P:
GO In Fig. 22-55, positive charge q = 7.81 pC is spread uniformly along a thin nonconducting rod of...Problem 33P:
GO In Fig. 22-56, a semi-infinite nonconducting rod that it, infinite in one direction only has...Problem 34P:
A disk of radius 2.5 cm has a surface charge density of 5.3 C/m2 on its upper face. What is the...Problem 35P:
SSM WWW At what distance along the central perpendicular axis of a uniformly charged plastic disk of...Problem 36P:
A circular plastic disk with radius R = 2.00 cm has a uniformly distributed charge Q = 2.00 106e on...Problem 37P:
Suppose you design an apparatus in which a uniformly charged disk of radius R is to produce an...Problem 38P:
Figure 22-58a shows a circular disk that is uniformly charged. The central z axis is perpendicular...Problem 39P:
In Millikans experiment, an oil drop of radius 1.64 m and density 0.851 g/cm3 is suspended in...Problem 40P:
GO An electron with a speed of 5.00 108 cm/s enters an electric field of magnitude 1.00 103 N/C,...Problem 41P:
SSM A charged cloud system produces an electric field in the air near Earths surface. A particle of...Problem 42P:
Humid air breaks down its molecules become ionized in an electric field of 3.0 106 N/C. In that...Problem 43P:
SSM An electron is released from rest in a uniform electric held of magnitude 2.00 104 N/C....Problem 44P:
An alpha particle the nucleus of a helium atom has a mass of 6.64 1027 kg and a charge of 2e. What...Problem 45P:
ILW An electron on the axis of an electric dipole is 25 nm from the center of the dipole. What is...Problem 46P:
An electron is accelerated eastward at 1.80 109m/s2 by an electric field. Determine the field a...Problem 47P:
SSM Beams of high-speed protons can be produced in guns using electric fields to accelerate the...Problem 48P:
In Fig. 22-59, an electron e is to be released from rest on the central axis of a uniformly charged...Problem 49P:
A 10.0 g block with a charge of 8.00 10-5 C is placed in an electric field E = 3000 - 6000N/C. What...Problem 50P:
At some instant the velocity components of an electron moving between two charged parallel plates...Problem 51P:
Assume that a honeybee is a sphere of diameter 1.000 cm with a charge of 45.0 pC uniformly spread...Problem 52P:
An electron eaters a region of uniform electric field with an initial velocity of 40 km/s in the...Problem 53P:
GO Two large parallel copper plates are 5.0 cm apart and have a uniform electric field between them...Problem 54P:
GO In Fig. 22-61, an electron is shot at an initial speed of v0 = 2.00 106 m/s. at angle 0 = 40.0...Problem 55P:
ILW A uniform electric field exists in a region between two oppositely charged plates. An electron...Problem 56P:
An electric dipole consists of charges 2e and -2e separated by 0.78 nm. It is in an electric field...Problem 57P:
SSM An electric dipole consisting of charges of magnitude 1.50 nC separated by 6.20 m is in an...Problem 58P:
A certain electric dipole is placed in a uniform electric field E of magnitude 20 N/C. Figure 22-62...Problem 59P:
How much work is required to turn an electric dipole 180 in a uniform electric field of magnitude E...Problem 60P:
A certain electric dipole is placed in a uniform electric field E of magnitude 40 N/C. Figure 22-63...Problem 61P:
Find an expression for the oscillation frequency of an electric dipole of dipole moment p and...Problem 62P:
a What is the magnitude of an electrons acceleration in a uniform electric field of magnitude 1.40 ...Problem 63P:
A spherical water drop 1.20 m in diameter is suspended in calm air due to a downward-directed...Problem 64P:
Three particles, each with positive charge Q, form an equilateral triangle, with each side of length...Problem 65P:
In Fig. 22-64a, a particle of charge Q produces an electric field of magnitude Epart at point P, at...Problem 66P:
A proton and an electron form two comers of an equilateral triangle of side length 2.0 10-6 m. What...Problem 67P:
A charge uniform linear density = 9.0 nC/m lies on a string that is stretched along an x axis from...Problem 68P:
In Fig. 22-65, eight particles form a square in which distance d = 2.0cm. The charges areq1 = 3e, q2...Problem 69P:
Two particles, each with a charge of magnitude 12 nC, are at two of the vertices of an equilateral...Problem 70P:
The following table gives the charge seen by Millikan at different times on a single drop in his...Problem 71P:
A charge of 20 nC is uniformly distributed along a straight rod of length 4.0 m that is bent into a...Problem 72P:
An electron is constrained to the central axis of the ring of charge of radius R in Fig. 22-11, with...Problem 73P:
SSM The electric field in an xy plane produced by a positively charged particle is 7.24.0 3.0N/C at...Problem 74P:
a What total excess charge q must the disk in Fig. 22-15 have for the electric field on the surface...Problem 75P:
In Fig. 22-66, particle 1 of charge 1.00 C, particle 2 of charge 1, 00 c, and particle 3 of charge Q...Problem 76P:
In Fig. 22-67, an electric dipole swings from an initial orientation i i= 20.0 to a final...Problem 77P:
A particle of charge q1 is at the origin of an x axis. a At what location on the axis should a...Problem 78P:
Two particles, each of positive charge q, are fixed in place on a y axis, one at y = d and the other...Problem 79P:
A clock face has negative point charges q, 2q, 3q,..., 12q fixed at the positions of the...Problem 81P:
An electric field E with an average magnitude of about 150 N/C points downward in the atmosphere...Problem 82P:
A circular rod has a radius of curvature R = 9.00 cm and a uniformly distributed positive charge Q =...Problem 83P:
SSM An electric dipole with dipole moment p= 3.00 4.001.24 10-30 C m is in an electric field E =...Problem 84P:
In Fig. 22-68, a uniform, upward electric field E of magnitude 2.00 103 N/C has been set up between...Problem 85P:
For the data of Problem 70, assume that the charge q on the drop is given by q = ne, where n is an...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
Book Details
The 10th edition of Hallidays Fundamentals of Physics building upon previous issues by offering several new features and additions. Examples include a new print component will revised to conform to the Version 5 design; chapter sections organized and numbered to match the Concept Modules; Learning Objectives have been added; illustrations changed to reflect (and advertise) multimedia versions available in WileyPLUS; and new problems provide a means of assigning the multimedia assets. The new edition offers most accurate, extensive and varied set of assessment questions of any course management program in addition to all questions including some form of question assistance including answer specific feedback to facilitate success. The text also offers multimedia presentations (videos and animations) of much of the material that provide an alternative pathway through the material for those who struggle with reading scientific exposition. Furthermore, the book includes math review content in both a self-study module for more in-depth review and also in just-in-time math videos for a quick refresher on a specific topic. The Halliday content is widely accepted as clear, correct, and complete. The end-of-chapters problems are without peer. The new design, which was introduced in 9e continues with 10e, making this new edition of Halliday the most accessible and reader-friendly book on the market.
Sample Solutions for this Textbook
We offer sample solutions for Fundamentals of Physics Extended 10e Binder Ready Version + WileyPLUS Registration Card 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...Chapter 17, Problem 1QChapter 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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Fundamentals of Physics, Volume 2
12th Edition
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