Solutions for FUNDAMENTALS OF PHYSICS V.1
Problem 1Q:
In Fig. 13-21, a central particle of mass M is surrounded by a square array of other particles,...Problem 3Q:
In Fig. 13-23, a central particle is surrounded by two circular rings of particles, at radii r and...Problem 4Q:
In Fig. 13-24, two particles, of masses m and 2m, are fixed in place on an axis, a Where on the axis...Problem 6Q:
In Fig. 13-26, three particles are fixed in place. The mass of B is greater than the mass of C. Can...Problem 7Q:
Rank the four systems of equal- mass particles shown in Checkpoint 2 according to the absolute value...Problem 8Q:
Figure 13-27 gives the gravitational acceleration ag for four planets as a function of the radial...Problem 9Q:
Figure 13-28 shows three particles initially fixed in place, with B and C identical and positioned...Problem 10Q:
Figure 13-29 shows six paths by which a rocket orbiting a moon might move from point a to point b....Problem 11Q:
Figure 13-30 shows three uniform spherical planets that are identical in size and mass. The periods...Problem 12Q:
In Fig. 13-31, a particle of mass m which is not shown is to be moved from an infinite distance to...Problem 1P:
ILW A mass M is split into two parts, m and M m, which are then separated by a certain distance....Problem 2P:
Moon effect. Some people believe that the Moon controls their activities. If the Moon moves from...Problem 4P:
The Sun and Earth each exert a gravitational force on the Moon. What is the ratio FSun/FEarth of...Problem 5P:
Miniature black holes. Left over from the big-bang beginning of the universe, tiny black holes might...Problem 6P:
GO In Fig. 13-32, a square of edge length 20.0 cm is formed by four spheres of masses m1 = 5.00 g,...Problem 7P:
One dimension. In Fig. 13-33, two point particles are fixed on an x axis separated by distance d,...Problem 8P:
In Fig. 13-34, three 5.00 kg spheres are located at distances d1 = 0.300 m and d2 = 0.400 m. What...Problem 9P:
SSM WWW We want to position a space probe along a line that extends directly toward the Sun in order...Problem 11P:
As seen in Fig. 13-36, two spheres of mass m and a third sphere of mass M form an equilateral...Problem 12P:
GO In Fig. 13-37a, particle A is fixed in place at x = 0.20 m on the x axis and particle B. with a...Problem 13P:
Figure 13-38 shows a spherical hollow inside a lead sphere of radius R = 4.00 cm; the surface of the...Problem 15P:
GO Three dimensions. Three point particles are fixed in place in an xyz coordinate system. Particle...Problem 16P:
GO In Fig. 13-40, a particle of mass m1 = 0.67 kg is a distance d = 23 cm from one end of a uniform...Problem 17P:
a What will an object weigh on the Moons surface if it weighs 100 N on Earths surface? b How many...Problem 18P:
Mountain pull. A large mountain can slightly affect the direction of down as determined by a plumb...Problem 19P:
SSM At what altitude above Earths surface would the gravitational acceleration be 4.9 m/s2?Problem 20P:
Mile-high building. In 1956, Frank Lloyd Wright proposed the construction of a mile-high building in...Problem 21P:
ILW Certain neutron stars extremely dense stars are believed to be rotating at about l rev/s. If...Problem 24P:
Two concentric spherical shells with uniformly distributed masses M1and M2 are situated as shown in...Problem 25P:
A solid sphere has a uniformly distributed mass of 1.0 104 kg and a radius of 1.0 m. What is the...Problem 27P:
Figure 13-42 shows, not to scale, a cross section through the interior of Earth. Rather than being...Problem 30P:
In Problem 1, what ratio m/M gives the least gravitational potential energy for the system?Problem 31P:
SSM The mean diameters of Mars and Earth are 6.9 103 km and 13 104 km, respectively. The mass of...Problem 32P:
a What is the gravitational potential energy of the two-particle system in Problem 3? If you triple...Problem 35P:
GO Figure 13-44 shows four particles, each of mass 20.0 g, that form a square with an edge length of...Problem 36P:
Zero, a hypothetical planet, has a mass of 5.0 1023 kg, a radius of 3.0 106 m, and no atmosphere....Problem 37P:
GO The three spheres in Fig, 13-45, with masses mA = 80 g, mB = 10 g, and mC = 20 g, have their...Problem 38P:
In deep space, sphere A of mass 20 kg is located at the origin of an x axis and sphere B of mass 10...Problem 40P:
A projectile is shot directly away from Earths surface. Neglect the rotation of Earth. What multiple...Problem 41P:
SSM Two neutron stars arc separated by a distance of 1.0 1010 m. They each have a mass of 1.0 1030...Problem 42P:
GO Figure 13-46a shows a particle A that can he moved along a y axis from an infinite distance to...Problem 43P:
a What linear speed must an Earth satellite have to he in a circular orbit al an altitude of 160 km...Problem 45P:
The Martian satellite Photos travels in an approximately circular orbit of radius 9.4 106 m with a...Problem 46P:
The first known collision between space debris and a functioning satellite occurred in 1996: At an...Problem 48P:
The mean distance of Mars from the Sun is 1.52 Limes that of Earth from the Sun. From Keplers law of...Problem 52P:
The Suns center is at one focus of Earths orbit. How far from this focus is the other focus, a in...Problem 53P:
A 20 kg satellite has a circular orbit with a period of 2.4 h and a radius of 8.0 106m around a...Problem 55P:
In 1610, Galileo used his telescope to discover four moons around Jupiter, with these mean orbital...Problem 56P:
In 1993 the spacecraft Galileo sent an image Fig. 13-48 of asteroid 243 Ida and a tiny orbiting moon...Problem 59P:
Three identical stars of mass M form an equilateral triangle that rotates around the triangles...Problem 60P:
In Fig. 13-50, two satellites, A and B, both of mass m = 125 kg, move in the same circular orbit of...Problem 63P:
SSM WWW An asteroid, whose mass is 2.0 10-4 times the mass of Earth, revolves in a circular orbit...Problem 64P:
A satellite orbits a planet of unknown mass in a circle of radius 2.0 107 m. The magnitude of the...Problem 65P:
A Satellite is in a circular Earth orbit of radius r. The area A enclosed by the orbit depends on r2...Problem 66P:
One way to attack a satellite in Earth orbit is to launch a swarm of pellets in the same orbit as...Problem 68P:
GO Two small spaceships, each with mass m = 2000 kg, are in the circular Earth orbit of Fig. 13-51,...Problem 71P:
Several planets Jupiter. Saturn, Uranus are encircled by rings, perhaps composed of material that...Problem 73P:
Figure 13-53 is a graph of the kinetic energy K of an asteroid versus its distance r from Earths...Problem 74P:
The mysterious visitor that appears in the enchanting story The Little Prince was said to come from...Problem 75P:
ILW The masses and coordinates of three spheres are as follows; 20 kg, x = 0.50 m, y = 1.0 m; 40 kg,...Problem 76P:
SSM A very early, simple satellite consisted of an inflated spherical aluminum balloon 30 m in...Problem 77P:
GO Four uniform spheres, with masses mA = 40 kg, mB = 35 kg, mC = 200 kg, and mD = 50 kg, have x, y...Problem 78P:
a In Problem 77, remove sphere A and calculate the gravitational potential energy of the remaining...Problem 90P:
A 50 kg satellite circles planet Cruton every 6.0 h. The magnitude of the gravitation a I farce...Problem 92P:
A 150.0 kg rocket moving radially outward from Earth has a speed of 3.70 km/c when its engine shuts...Problem 94P:
Two 20 kg spheres are fixed in place on a y axis, one at y = 0.40 m and the other at y = 0.40 m. A...Problem 95P:
Sphere A with mass 80 kg is located at the origin of an xy coordinate system; sphere B with mass 60...Problem 96P:
In his 1865 science fiction novel From the Earth to the Moon Jules Verne described how three...Problem 99P:
A thin rod with mass M = 5.00 kg is bent in a semicircle of radius R = 0.650 m Fig. 13-56. a What is...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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