Scientists want to place a 4 x 10° kg satellite in orbit around Mars. They plan to have the satellite orbit at a speed of 2330 m/s in a perfectly circular orbit. Here is some information that may help solve this problem: mmars = 6.4191 x 1023 kg Imars = 3.397 x 106 m G = 6.67428 x 10-11 N-m²/kg² 1) What radius should the satellite move at in its orbit? (Measured frrom the center of Mars.) m| Submit 2) What is the force of attraction between Mars and the satellite? N Submit 3) What is the acceleration of the satellite in orbit? m/s? Submit
Scientists want to place a 4 x 10° kg satellite in orbit around Mars. They plan to have the satellite orbit at a speed of 2330 m/s in a perfectly circular orbit. Here is some information that may help solve this problem: mmars = 6.4191 x 1023 kg Imars = 3.397 x 106 m G = 6.67428 x 10-11 N-m²/kg² 1) What radius should the satellite move at in its orbit? (Measured frrom the center of Mars.) m| Submit 2) What is the force of attraction between Mars and the satellite? N Submit 3) What is the acceleration of the satellite in orbit? m/s? Submit
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![Scientists want to place a 4 x 10° kg satellite in orbit around Mars. They plan to have the satellite orbit at a speed of
2330 m/s in a perfectly circular orbit. Here is some information that may help solve this problem:
mmars = 6.4191 x 1023 kg
rmars = 3.397 x 106 m
G = 6.67428 x 10-11 N-m²/kg?
1) What radius should the satellite move at in its orbit? (Measured frrom the center of Mars.)
m Submit
2) What is the force of attraction between Mars and the satellite?
N Submit
+
3) What is the acceleration of the satellite in orbit?
m/s Submit
4) Which of the following quantities would change the radius the satellite needs to orbit at?
Othe mass of the satellite
Othe mass of the planet
Othe speed of the satellite
Submit](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa467e4d7-c084-42be-88e2-98fa4579fbcd%2F12f80f6a-b90c-413d-a7ed-4f3bcb06cdc5%2Fghvehyq_processed.png&w=3840&q=75)
Transcribed Image Text:Scientists want to place a 4 x 10° kg satellite in orbit around Mars. They plan to have the satellite orbit at a speed of
2330 m/s in a perfectly circular orbit. Here is some information that may help solve this problem:
mmars = 6.4191 x 1023 kg
rmars = 3.397 x 106 m
G = 6.67428 x 10-11 N-m²/kg?
1) What radius should the satellite move at in its orbit? (Measured frrom the center of Mars.)
m Submit
2) What is the force of attraction between Mars and the satellite?
N Submit
+
3) What is the acceleration of the satellite in orbit?
m/s Submit
4) Which of the following quantities would change the radius the satellite needs to orbit at?
Othe mass of the satellite
Othe mass of the planet
Othe speed of the satellite
Submit
![5) What should the speed of the orbit be, if we want the satellite to take 8 times longer to complete one full revolution
of its orbit?
m/s Submit](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa467e4d7-c084-42be-88e2-98fa4579fbcd%2F12f80f6a-b90c-413d-a7ed-4f3bcb06cdc5%2Femrhsv_processed.png&w=3840&q=75)
Transcribed Image Text:5) What should the speed of the orbit be, if we want the satellite to take 8 times longer to complete one full revolution
of its orbit?
m/s Submit
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