An object of mass 135 kg moves in a smooth straight tunnel of length 2450 km dug through a chord of a planet of mass 7.64 x 10 kg and radius 7 x 10® m. increases. On the way from a planet nauts reach a point where that moon's itational pull transitions from being weaker than that of the planet to being stronger than that of the planet. The masses of the planet and the moon are, respectively, 5.91 x 10 kg and 7.36 x 1022 kg. The distance from the center of the planet to the center of the moon is 3.42 x wa moon, astro grav т 105 m. Determine the distance of this point from the center of the planet. universal gravitational constant is 6.67259 x 10-1" N-m²/kg". The value of the The object slides without friction along the I-axis. Its motion is the same as that of a mass on the end of a spring. Find the effective spring constant of this motion. The value of the universal gravitational constant is 6.67259 x 10-1" N m²/kg². Answer in units of N/m.
An object of mass 135 kg moves in a smooth straight tunnel of length 2450 km dug through a chord of a planet of mass 7.64 x 10 kg and radius 7 x 10® m. increases. On the way from a planet nauts reach a point where that moon's itational pull transitions from being weaker than that of the planet to being stronger than that of the planet. The masses of the planet and the moon are, respectively, 5.91 x 10 kg and 7.36 x 1022 kg. The distance from the center of the planet to the center of the moon is 3.42 x wa moon, astro grav т 105 m. Determine the distance of this point from the center of the planet. universal gravitational constant is 6.67259 x 10-1" N-m²/kg". The value of the The object slides without friction along the I-axis. Its motion is the same as that of a mass on the end of a spring. Find the effective spring constant of this motion. The value of the universal gravitational constant is 6.67259 x 10-1" N m²/kg². Answer in units of N/m.
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