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Suppose that a satellite is in a circular orbit at a height of 2.00 ×\times 106 m above Earth's surface.What is the acceleration due to gravity at this elevation?


A) 9.80 m/s2
B) 3.22 m/s2
C) 5.67 m/s2
D) 7.68 m/s2
E) None of these is correct.

F) A) and E)
G) C) and D)

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During the lunar mission of Apollo 11,Armstrong and Aldrin descended to the moon's surface in the lunar module while Collins remained in orbit in the command module.If the command module's period was 2 hours and 20 minutes,how high above the moon's surface did it orbit? (mmoon = 7.35 ×\times 1022 kg,Rmoon = 1.74 ×\times 106 m,and G = 6.67 ×\times 10-11 N · m2/kg2.)


A) 3.22 ×\times 105 m
B) 1.04 ×\times 1011 m
C) 5.67 ×\times 102 m
D) 2.53 ×\times 103 m
E) Not enough information is given to answer this question.

F) A) and B)
G) A) and E)

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NASA trains astronauts in "zero-g" by flying a C-9 jet plane in a parabolic path,the so called "Weightless Wonder" or the "Vomit Comet" flights.One path the plane takes is expressed as y = yo + 0.8 x - 2.18 ×\times 10-4 x2 where yo is the highest point,and x and y are the horizontal and vertical coordinates (in m) .What is the horizontal speed of the plane?


A) 50 m/s
B) 100 m/s
C) 150 m/s
D) 200 m/s
E) 250 m/s

F) A) and D)
G) None of the above

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Suppose a rocket is fired vertically upward from the surface of Earth with one-half of the escape speed.How far from the center of Earth will it reach before it begins to fall back? (Let g = 9.8 m/s2 and RE = 6370 km.)


A) 1.3 ×\times 104 km
B) 8.5 ×\times 103 km
C) 9.6 ×\times 103 km
D) 2.6 ×\times 104 km
E) 1.9 ×\times 104 km

F) A) and D)
G) A) and C)

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The constant of universal gravitation is


A) ~9.81 m/s2
B) ~6.67 ×\times 10-11 N · m2/kg2
C) ~the gravitational attraction between the masses of any two bodies.
D) ~the ratio of the forces of attraction between any two masses.
E) None of these is correct.

F) A) and E)
G) D) and E)

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A rocket is launched straight up from the surface of Earth with a speed v,such that the rocket reaches a maximum height of RE above the surface.Find the launch speed of the rocket.Neglect air resistance.(RE = 6.38 ×\times 106 m,ME = 5.98 ×\times 1024 kg,G = 6.67 ×\times 10-11 N·m2/kg2)


A) 2.81 km/s
B) 5.59 km/s
C) 11.2 km/s
D) 7.91 km/s
E) None of the above

F) A) and E)
G) A) and B)

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The acceleration due to gravity in the vicinity of Earth


A) varies directly with the distance from the center of Earth.
B) is a constant that is independent of altitude.
C) varies inversely with the distance from the center of Earth.
D) varies inversely with the square of the distance from the center of Earth.
E) is described by none of these.

F) A) and B)
G) B) and C)

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The moon has a period of 27.3 d and is an average distance from Earth of 3.84 ×\times 105km.A communications satellite is placed in an Earth orbit at 4.23 ×\times 104 km from the center of Earth.What is the period of this satellite?


A) 0.87 h
B) 1.0 d
C) 3.0 d
D) 6.3 d
E) 8.0 h

F) A) and C)
G) A) and B)

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In a distant galaxy,a planet orbits its sun at a distance of 1.8 ×\times 1012 m with a period of 108s.A second planet orbits the same sun at a distance of 9 v 1011 m.What is the period of the second planet?


A) 5 ×\times 107 s
B) 2 ×\times 108 s
C) 0.35 ×\times 108 s
D) 2.8 ×\times 108 s
E) 5 ×\times 108 s

F) C) and D)
G) B) and E)

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What is the difference in the force of gravity on a 1.0-kg mass at the bottom of the deepest ocean trench and that at the top of the highest mountain? Assume that g = 9.8 m/s2 at sea level.The radius of Earth at sea level is 6.37 ×\times 106 m.The deepest trench is the Marianas Trench,south of Guam,which has a depth D = 1.103 ×\times 104 m below sea level.The highest mountain is Everest in Nepal,which has a height of h = 8.847 ×\times 103 m above sea level.The difference is


A) 0.061 N
B) 0.0067 N
C) 0.027 N
D) 0.034 N
E) 0.0062 N

F) None of the above
G) A) and B)

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Earth's gravitational field is given by  Earth's gravitational field is given by   .The total flux (field times area) for a spherical surface area A that encloses all the field lines is   A)  -4 \pi GM<sub>E</sub> B)  -GM<sub>E</sub> C)  -GM<sub>E</sub>/4 \pi  D)  -2 \pi GM<sub>E</sub> E)  -4GM<sub>E</sub> .The total flux (field times area) for a spherical surface area A that encloses all the field lines is  Earth's gravitational field is given by   .The total flux (field times area) for a spherical surface area A that encloses all the field lines is   A)  -4 \pi GM<sub>E</sub> B)  -GM<sub>E</sub> C)  -GM<sub>E</sub>/4 \pi  D)  -2 \pi GM<sub>E</sub> E)  -4GM<sub>E</sub>


A) -4 π\pi GME
B) -GME
C) -GME/4 π\pi
D) -2 π\pi GME
E) -4GME

F) D) and E)
G) C) and E)

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Newton's law of gravity is F = GMm/r2.What are the SI units of the gravitational constant G?


A) G has no dimensions
B) N · kg2/m2
C) N · m2/kg2
D) kg2/N · m2
E) None of these is correct.

F) B) and D)
G) A) and D)

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Suppose that a satellite is in a circular orbit at a height of 2.00 ×\times 106 m above Earth's surface.What is the period of the satellite's motion at this elevation?


A) 5.65 h
B) 4.24 h
C) 1.07 h
D) 2.12 h
E) None of these is correct.

F) All of the above
G) A) and B)

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When two masses are a distance R apart,each exerts a force of magnitude F on the other.When the distance between them is changed to 4R,the force is changed to


A) 16F
B) 4F
C) F/2
D) F/4
E) F/16

F) D) and E)
G) C) and D)

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A satellite is orbiting Earth in an elliptical orbit.The distance of the satellite from Earth at the aphelion (rA) is twice that at the perihelion (rB) .The total energy (potential and kinetic) of the satellite at A is _____ the total energy at B. A satellite is orbiting Earth in an elliptical orbit.The distance of the satellite from Earth at the aphelion (r<sub>A</sub>) is twice that at the perihelion (r<sub>B</sub>) .The total energy (potential and kinetic) of the satellite at A is _____ the total energy at B.   A) the same as B) twice C) half D) one quarter E) four times


A) the same as
B) twice
C) half
D) one quarter
E) four times

F) A) and B)
G) All of the above

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Kepler's second law,"a line joining any planet to the Sun sweeps out equal areas in equal times" is based on which conservation principle?


A) conservation of energy
B) conservation of linear momentum
C) conservation of angular momentum
D) the work-energy theorem
E) It is not based on any conservation principle.

F) A) and B)
G) B) and E)

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The Cavendish experiment has been described in elementary textbooks as "weighing the Earth." In fact,it was designed to measure the


A) acceleration due to gravity.
B) mass of Earth.
C) period of an Earth satellite.
D) gravitational constant G.
E) variation of g with height.

F) C) and E)
G) A) and B)

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Use the following scenario to answer the next problem. NASA's "Weightless Wonder" flights can simulate "zero-g" or some other extraterrestrial gravity by flying a C-9 jet plane in a parabolic path.One path the plane takes is expressed as y = yo + 0.8x – 1.02 x10-4 x2 where yo is the highest point, and x and y are the horizontal and vertical coordinates (in m) . -What is the horizontal speed of the plane if the flight is to simulate lunar gravity, gMoon = 1.62 m/s2.


A) 50 m/s
B) 100 m/s
C) 150 m/s
D) 200 m/s
E) 250 m/s

F) A) and E)
G) A) and B)

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At the surface of the moon,the acceleration due to the gravity of the moon is At the surface of the moon,the acceleration due to the gravity of the moon is   .At a distance from the center of the moon equal to three times the radius of the moon,the acceleration due to the gravity of the moon is A) 9   B)    /3 C)    /4 D)    /9 E) 27  .At a distance from the center of the moon equal to three times the radius of the moon,the acceleration due to the gravity of the moon is


A) 9 At the surface of the moon,the acceleration due to the gravity of the moon is   .At a distance from the center of the moon equal to three times the radius of the moon,the acceleration due to the gravity of the moon is A) 9   B)    /3 C)    /4 D)    /9 E) 27
B) At the surface of the moon,the acceleration due to the gravity of the moon is   .At a distance from the center of the moon equal to three times the radius of the moon,the acceleration due to the gravity of the moon is A) 9   B)    /3 C)    /4 D)    /9 E) 27  /3
C) At the surface of the moon,the acceleration due to the gravity of the moon is   .At a distance from the center of the moon equal to three times the radius of the moon,the acceleration due to the gravity of the moon is A) 9   B)    /3 C)    /4 D)    /9 E) 27  /4
D) At the surface of the moon,the acceleration due to the gravity of the moon is   .At a distance from the center of the moon equal to three times the radius of the moon,the acceleration due to the gravity of the moon is A) 9   B)    /3 C)    /4 D)    /9 E) 27  /9
E) 27 At the surface of the moon,the acceleration due to the gravity of the moon is   .At a distance from the center of the moon equal to three times the radius of the moon,the acceleration due to the gravity of the moon is A) 9   B)    /3 C)    /4 D)    /9 E) 27

F) A) and B)
G) C) and D)

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A planet is made of two distinct materials.From the core to R/2,the density of the material is 4000 kg/m3,and from R/2 to R the density is 3000 kg/m3.What is the gravity at the surface of the planet if R = 5000 km?


A) 0.699 m/s2
B) 3.66 m/s2
C) 4.19 m/s2
D) 4.38 m/s2
E) 4.99 m/s2

F) A) and B)
G) C) and D)

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