The small spherical planet called "Glob" has a mass of 7.20×1018 kg and a radius of 6.29×104 m. An astronaut on the surface of Glob throws a rock straight up. The rock reaches a maximum height of 1.20×103 m, above the surface of the planet, before it falls back down.
What was the initial speed of the rock as it left the astronaut's hand? (Glob has no atmosphere, so no energy is lost to air friction. G = 6.67×10-11 Nm2/kg2.) (in m/s)
A 27.0 kg satellite is in a circular orbit with a radius of
1.35×105 m around the planet Glob. Calculate the speed
of the satellite.
(in m/s)
a)
0.5 m v^2 - GM m / R = - GM m / ( R+h)
0.5 v^2 = 6.67* 10^-11* 7.2* 10^18* ( 1 / ( 6.29* 10^4) - 1 / ( 6.29* 10^4 + 1200)
v = 16.908 m/s
===
b)
orbital velocity
v^2 = 6.67* 10^-11* 7.2* 10^18 / ( 1.35* 10^5)
v = 59.6 m/s
=====
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The small spherical planet called "Glob" has a mass of 7.20×1018 kg and a radius of...
5. [2pt] The small spherical planet called Glob has a mass of 7.80x1018 kg and a radius of 6.20x104 m). A 27.0 kg satellite is in a circular orbit around the planet at a height of 1.40x105 m above the planet's surface. Calculate the speed of the satellite. Answer: Submit Al Answers
i managed to get the top part but cant get the 26 kg satellite
part
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