For a satellite in an *elliptical* orbit around the earth, the amount of work done in a short time interval by the  gravitational force from the earth on the satellite A) is zero B) is positive when the satellite is getting closer to the earth, and negative when it’s getting farther from the earth. C) is negative when the satellite is getting closer to the earth, and positive when it’s getting farther from the earth.

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For a satellite in an *elliptical* orbit around the earth, the amount of work done in a short time interval by the 
gravitational force from the earth on the satellite
A) is zero
B) is positive when the satellite is getting closer to the earth, and negative when it’s getting farther from the earth.
C) is negative when the satellite is getting closer to the earth, and positive when it’s getting farther from the earth.
D) is positive.
E) is negative. 

***you use the mechanical energy to justify your answer for this question and please draw a image

 

 

4. For a satellite in an *elliptical* orbit around the earth, the amount of work done in a short time interval by the
gravitational force from the earth on the satellite
A) is zero
B) is positive when the satellite is getting closer to the earth, and negative when it's getting farther from the earth.
C) is negative when the satellite is getting closer to the earth, and positive when it's getting farther from the earth.
D) is positive.
E) is negative.
Transcribed Image Text:4. For a satellite in an *elliptical* orbit around the earth, the amount of work done in a short time interval by the gravitational force from the earth on the satellite A) is zero B) is positive when the satellite is getting closer to the earth, and negative when it's getting farther from the earth. C) is negative when the satellite is getting closer to the earth, and positive when it's getting farther from the earth. D) is positive. E) is negative.
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