A planet has a mass of 6.71 x 1023 kg and a radius of 3.51 x 106 m. (a) What is the acceleration due to gravity on this planet? (b) How much would a 69.7-kg person weigh on this planet? (a) Number (b) Number Units Units N m/s^2

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Chapter1: Units, Trigonometry. And Vectors
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A planet has a mass of \(6.71 \times 10^{23}\) kg and a radius of \(3.51 \times 10^{6}\) m. 

(a) What is the acceleration due to gravity on this planet?

Input fields:
- Number: [Text box]
- Units: [Dropdown menu] m/s\(^2\)

(b) How much would a 69.7-kg person weigh on this planet?

Input fields:
- Number: [Text box]
- Units: [Dropdown menu] N
Transcribed Image Text:A planet has a mass of \(6.71 \times 10^{23}\) kg and a radius of \(3.51 \times 10^{6}\) m. (a) What is the acceleration due to gravity on this planet? Input fields: - Number: [Text box] - Units: [Dropdown menu] m/s\(^2\) (b) How much would a 69.7-kg person weigh on this planet? Input fields: - Number: [Text box] - Units: [Dropdown menu] N
Expert Solution
Step 1

Given data:

Mass of planet (M) = 6.71×1023 kg

Radius (R) = 3.51×106 m

Mass of the person (m) = 69.7 kg

Required:

Acceleration due to gravity (g) on this planet and weight of the person 

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