Solutions for FUNDAMENTALS OF PHYSICS V.1
Problem 1Q:
Figure 21-11 shows 1 four situations in which five charged particles are evenly spaced along an...Problem 2Q:
Figure 21-12 shows three pairs of identical spheres that are to be touched together and then...Problem 3Q:
Figure 21-13 shows four situations in which charged particles are fixed in place on an axis. In...Problem 4Q:
Figure 21-14 shows two charged particles on an axis. The charges are free to move. However, a third...Problem 5Q:
In Fig. 21-15, a central particle of charge q is surrounded by two circular rings of charged...Problem 6Q:
A positively charged ball is brought close to an electrically neutral isolated conductor. The...Problem 7Q:
Figure 21-16 shows three situations involving a charged particle and a uniformly charged spherical...Problem 8Q:
Figure 21-17 shows four arrangements of charged particles. Rank the arrangements according to the...Problem 9Q:
Figure 21-18 shows four situations in which particles of charge q or q are fixed in place. In each...Problem 10Q:
In Fig. 21-19, a central particle of charge 2q is surrounded by a square array of charged particles,...Problem 11Q:
Figure 21-20 shows three identical conducting bubbles A, B, and C floating in a conducting container...Problem 12Q:
Figure 21-21 shows four situations in which a central proton is partially surrounded by protons or...Problem 1P:
SSM ILW Of the charge Q initially on a tiny sphere, a portion q is to be transferred to a second,...Problem 2P:
Identical isolated conducting spheres 1 and 2 have equal charges and are separated by a distance...Problem 3P:
SSM What must be the distance between point charge q1 = 26.0 C and point charge q2 = 47.0 C for the...Problem 4P:
In the return stroke of a typical lightning bolt, a current of 2.5 104 A exists for 20 s. How much...Problem 5P:
A particle of charge 3.00 106 C is 12.0 cm distant from a second particle of charge 1.50 106C....Problem 6P:
ILW Two equally chained particles are held 3.2 103 m apart and then released from rest. The initial...Problem 7P:
In Fig. 21-23, three charged particles lie on an x axis. Particles 1 and 2 are fixed in place....Problem 8P:
In Fig. 21-24, three identical conducting spheres initially have the following charges: sphere A,...Problem 9P:
SSM WWW Two identical conducting spheres, fixed in place, attract each other with an electrostatic...Problem 10P:
GO In Fig. 21-25, four particles form a square. The charges are q1 = q4 = Q and q2 = q3 = q. a What...Problem 11P:
ILW In Fig. 21-25, the particles have charges q1 = q2 = 100 nC and q3 = q4 = 200 nC, and distance a...Problem 12P:
Two particles are fixed on an x axis. Particle 1 of charge 4 c is located at x = 2.0 cm; particle 2...Problem 13P:
GO In Fig. 21-26, particle 1 of charge l.0 C and particle 2 of charge 3.0 C are held at separation L...Problem 14P:
Three particles are fixed on an x axis. Particle 1 of charge q1 is at x = a and particle 2 of charge...Problem 15P:
GO The charges and coordinates of two charged particles held fixed in an xy plane are q1 = 3.0 C, x1...Problem 16P:
GO In Fig. 21-27a, particle l of charge q1 and panicle 2 of charge q2 are fixed in place on an x...Problem 17P:
In Fig.21-28a, particles 1 and 2 have charge 20.0 C each and are held at separation distance d =...Problem 18P:
In Fig. 21-29a, three positively charged particles are fixed on an x axis. Particles B and C are so...Problem 19P:
SSM WWW In Fig. 21-26, particle 1 of charge q and particle 2 of charge 4.00q are held at separation...Problem 20P:
GO Figure 21-30a shows an arrangement of three charged particles separated by distance d. Particles...Problem 21P:
GO A nonconducting spherical shell, with an inner radius of 4.0 cm and an outer radius of 6.0 cm,...Problem 22P:
GO Figure 21-31 shows an arrangement of four charged particles, with angle = 30.0 and distance d =...Problem 23P:
GO In Fig. 21-32, particles 1 and 2 of charge q1 = q2 = 3, 20 1019 C are on a y axis at distance d...Problem 24P:
Two tiny, spherical water drops, with identical charges of 1.00 1016 C, have a center-to-center...Problem 25P:
ILW How many electrons would have to be removed from a coin to leave it with a charge of 1.0 107 C?Problem 27P:
SSM The magnitude of the electrostatic force between two identical ions that are separated by a...Problem 28P:
A current of 0.300 A through your chest can send your heart into fibrillation, ruining the normal...Problem 29P:
GO In Fig. 21-33, particles 2 and 4, of charge e, are fixed in place on a y axis, at y2 = 10.0 cm...Problem 30P:
In Fig. 21-26, particles 1 and 2 are fixed in place on an x axis, at a separation of L = 8.00 cm....Problem 31P:
ILW Earths atmosphere is constantly bombarded by cosmic ray protons that originate somewhere in...Problem 32P:
GO Figure 21-34a shows charged particles 1 and 2 that are fixed in place on an x axis. Particle 1...Problem 33P:
Calculate the number of coulombs of positive charge in 250 cm3 of neutral water. Hint: A hydrogen...Problem 34P:
GO Figure 21-35 shows electrons 1 and 2 on an x axis and charged ions 3 and 4 of identical charge q...Problem 35P:
SSM In crystals of the salt cesium chloride, cesium ions Cs form the eight corners of a cube and a...Problem 36P:
Electrons and positrons are produced by the nuclear transformations of protons and neutrons known as...Problem 38P:
GO Figure 21-37 shows four identical conducting spheres that are actually well separated from one...Problem 39P:
SSM In Fig. 21-38, particle 1 of charge 4e is above a floor by distance d1 = 2.00 mm and panicle 2...Problem 40P:
In Fig, 21-23, particles 1 and 2 are fixed in place, but particle 3 is free to move. If the net...Problem 41P:
a What equal positive charges would have to be placed on Earth and on the Moon to neutralize their...Problem 42P:
In Fig. 21-39, two tiny conducting balls of identical mass m and identical charge q hang from...Problem 43P:
a Explain what happens to the balls of Problem 42 if one of them is discharged loses its charge q...Problem 44P:
SSM How far apart must two protons be if the magnitude of the electrostatic force acting on either...Problem 45P:
How many megacoulombs of positive charge are in 1.00 mol of neutral molecular-hydrogen gas H2?Problem 46P:
In Fig. 21-40, four particles are fixed along an x axis, separated by distances d = 2.00 cm. The...Problem 47P:
GO Point charges of 6.0 C and 4.0 C are placed on an x axis, at x = 8.0 m and x = 16 m,...Problem 48P:
In Fig. 21-41, three identical conducting spheres form an equilateral triangle of side length d =...Problem 49P:
A neutron consists of ore up quark of charge 2e/3 and two down quarks each having charge e/3. If we...Problem 50P:
Figure 21-42 shows a long, nonconducting, massless rod of length L, pivoted at its center and...Problem 51P:
A charged nonconducting rod, with a length of 2.00 m and a cross-sectional area of 4.00 cm2, lies...Problem 52P:
A particle of charge Q is Fixed at the origin of an xy coordinate system. At t = 0 a particle m =...Problem 53P:
What would be the magnitude of the electrostatic force between two 1.00 C point charges separated by...Problem 54P:
A charge of 6.0 C is to be split into two parts that are then separated by 3.0 mm. What is the...Problem 55P:
Of the charge Q on a tiny sphere, a fraction is to be transferred to a second, nearby sphere. The...Problem 56P:
If a cat repeatedly rubs against your cotton slacks on a dry day, the charge transfer between the...Problem 57P:
We know that the negative charge on the electron and the positive charge on the proton are equal....Problem 58P:
In Fig, 21-26, particle 1 of charge 80.0C and particle 2 of charge 40.0 C are held at separation L =...Problem 60P:
GO In Fig. 21-43, six charged particles surround particle 7 at radial distances of either d = 1.0 cm...Problem 61P:
Three charged particles form a triangle: particle 1 with charge Q1 = 80.0 nC is at xy coordinates 0,...Problem 62P:
SSM In Fig. 21-44, what are the a magnitude and b direction of the net electrostatic force on...Problem 63P:
Two point charges of 30 nC and 40 nC are held fixed on an x axis, at the origin and at x = 72 cm,...Problem 64P:
Two small, positively charged spheres have a combined charge of 5.0 105 C. If each sphere is...Problem 65P:
The initial charges on the three identical metal spheres in Fig. 21-24 are the following: sphere A,...Problem 66P:
An electron is in a vacuum near Earths surface and located at y = 0 on a vertical y axis. At what...Problem 67P:
SSM In Fig. 21-26, particle 1 of charge 5.00q and particle 2 of charge 2.00q are held at separation...Problem 68P:
Two engineering students, John with a mass of 90 kg and Mary with a mass of 45 kg, are 30 m apart....Problem 69P:
In the radioactive decay of Eq. 21-13, a 238U nucleus transforms to 234Th and an ejected 4He. These...Problem 70P:
In Fig. 21-25, four particles form a square. The charges are q1 = Q, q2 = q3 = q, and q4 = 2.00Q....Problem 71P:
In a spherical metal shell of radius R, an electron is shot from the center directly toward a tiny...Problem 72P:
An electron is projected with an initial speed vl = 3.2 105 m/s directly toward a very distant...Problem 73P:
In an early model of the hydrogen atom the Bohr model, the electron orbits the proton in uniformly...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 FUNDAMENTALS OF PHYSICS V.1 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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