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What do kepler's 3 laws imply about orbit shape, orbital speed, time for one complete orbit (period), and orbital size (semi-major axis)? Please help me do my homework

  1. #1
    RIPtotse victim of incest [my adversative decurved garbo]
    So yah, this is due in like an hour so plz help cuz this sentence alone is giving me anxiety let alone putting it off until the night it's due.

    What do kepler's 3 laws imply about orbit shape, orbital speed, time for one complete orbit (period), and orbital size (semi-major axis)?

    It's like a discussion problem or whatever.

    I'm trying here guys but I'm really not digging this stupid question.

    Halp plz
  2. #2
    RIPtotse victim of incest [my adversative decurved garbo]
    I knew u niggers would fail me in my time of need
    The following users say it would be alright if the author of this post didn't die in a fire!
  3. #3
    Fucking lol
  4. #4
    Bradley Black Hole
    i hit that shit i'm outta orbit
    your mom pregnant i will abort it
    good girl so i snort it
    if u annoy me i will short it
  5. #5
    aldra JIDF Controlled Opposition
    you're studying asstrophysics? I could probably answer the questions just looking at the wiki page but I don't think it'd be the answers they're looking for
  6. #6
    RIPtotse victim of incest [my adversative decurved garbo]
    I got it.


    And I study shit I like. This semester it's just electives ...astronomy and art of film
  7. #7
    "It implies that Planet Earth is not the center of the known universe"
  8. #8
    aldra JIDF Controlled Opposition
    implies kepler was intimately familiar with a pair of balls
  9. #9
    RIPtotse victim of incest [my adversative decurved garbo]
    I'll see if I can go back to the problem and copy and paste my answer so u gonts can see the answer lemme check
  10. #10
    WellHung Black Hole
    Kepler's laws imply that orbital shape is contingent upon the object's mass × velocity. From that value, subtract the amount of gravitational pull upon it from the closest star.
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