33. (a) Newton's Law of Gravitation states that two bodjes with masses m, and m2 attract each other with a force mim2 F = G where r is the distance between the bodies and G is the gravitational constant. If one of the bodies is fixed, find the work needed to move the other from r = a to r = b. (b) Compute the work required to launch a 1000-kg satellite vertically to a height of 1000 km. You may assume that the earth's mass is 5.98 X 10 kg 24 and is concentrated at its center. Take the radius of the earth to be 6.37 X 10° m and G = 6.67 X 10- N m²/kg?.

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5.4 problem 33

33. (a) Newton's Law of Gravitation states that two bodjes
with masses m, and m2 attract each other with a force
mim2
F = G
where r is the distance between the bodies and G
is the gravitational constant. If one of the bodies is
fixed, find the work needed to move the other from
r = a to r = b.
(b) Compute the work required to launch a 1000-kg
satellite vertically to a height of 1000 km. You may
assume that the earth's mass is 5.98 X 10 kg
24
and is concentrated at its center. Take the
radius of the earth to be 6.37 X 10° m and
G = 6.67 X 10- N m²/kg?.
Transcribed Image Text:33. (a) Newton's Law of Gravitation states that two bodjes with masses m, and m2 attract each other with a force mim2 F = G where r is the distance between the bodies and G is the gravitational constant. If one of the bodies is fixed, find the work needed to move the other from r = a to r = b. (b) Compute the work required to launch a 1000-kg satellite vertically to a height of 1000 km. You may assume that the earth's mass is 5.98 X 10 kg 24 and is concentrated at its center. Take the radius of the earth to be 6.37 X 10° m and G = 6.67 X 10- N m²/kg?.
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