Scientists want to place a 4100 kg satellite in orbit around Mars. They plan to have the satellite orbit at a speed of 2419 m/s in a perfectly circular orbit. Here is some information that may help solve this problem: mmars " 6.4191 x 1023 kg "mars " 3.397 x 10° m G = 6.67428 x 1011 N-m²/kg? 1) What radius should the satellite move at in its orbit? (Measured frrom the center of Mars.) m Submit
Scientists want to place a 4100 kg satellite in orbit around Mars. They plan to have the satellite orbit at a speed of 2419 m/s in a perfectly circular orbit. Here is some information that may help solve this problem: mmars " 6.4191 x 1023 kg "mars " 3.397 x 10° m G = 6.67428 x 1011 N-m²/kg? 1) What radius should the satellite move at in its orbit? (Measured frrom the center of Mars.) m Submit
College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Scientists want to place a 4100 kg satellite in orbit around Mars. They plan to have the satellite orbit at a speed of 2419
m/s in a perfectly circular orbit. Here is some information that may help solve this problem:
mmars - 6.4191 x 1023 ke
"mars - 3.397 x 10° m
G = 6.67428 x 10*11 N-m?/kg?
In
P
In
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?
O the mass of the satellite
Othe mass of the planet
O the 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
(Syryey Question)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb9224f3d-9ee3-4a76-b35f-f0df5b9f0377%2F64756575-d209-4d6c-aac9-ab5f263700cb%2Fjldoy6_processed.png&w=3840&q=75)
Transcribed Image Text:St
Scientists want to place a 4100 kg satellite in orbit around Mars. They plan to have the satellite orbit at a speed of 2419
m/s in a perfectly circular orbit. Here is some information that may help solve this problem:
mmars - 6.4191 x 1023 ke
"mars - 3.397 x 10° m
G = 6.67428 x 10*11 N-m?/kg?
In
P
In
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?
O the mass of the satellite
Othe mass of the planet
O the 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
(Syryey Question)
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