What speed should a satellite with a mass of 1500 kg at 8,500 km above the center of the Earth be travelling at in order to stay in orbit (remember, the mass of the Earth is 5.97 x 1024 kg) (in m/s, G = 6.67 × 10" N (m/kg) ).
What speed should a satellite with a mass of 1500 kg at 8,500 km above the center of the Earth be travelling at in order to stay in orbit (remember, the mass of the Earth is 5.97 x 1024 kg) (in m/s, G = 6.67 × 10" N (m/kg) ).
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
Transcribed Image Text:**Newton's Universal Law of Gravity - Assessment**
**Question:**
What speed should a satellite with a mass of 1500 kg at 8,500 km above the center of the Earth be traveling at in order to stay in orbit? (Remember, the mass of the Earth is \(5.97 \times 10^{24}\) kg, \(G = 6.67 \times 10^{-11}\) N(m/kg)\(^2\)).
**Answer Options:**
a) \(6.8 \times 10^3\) m/s
b) \(4.9 \times 10^2\) m/s
c) \(7.2 \times 10^2\) m/s
d) \(9.23 \times 10^4\) m/s
e) \(3.5 \times 10^3\) m/s
**Interactive Options:**
- Need a **Hint?**
- **Check it** (Button for selecting the correct answer)
**Additional Features:**
- **Scratchpad**: An area for calculations or notes.
- **Improve this question**: Option to provide feedback on the question.
This question is designed to test your understanding of orbital mechanics using Newton's Universal Law of Gravity.
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