3 ms·
Orbiting has more to do with velocity than altitude.
by phaedrus 2y ago
Orbiting has more to do with velocity than altitude.
- jvanderbot 2y agoSpecifically, you need to be moving approx 10 km/s which 22,000 mph or mach 30.
- laverya 2y agoYou only need to be moving ~7.5-8km/s, but getting to orbit tends to take 9.5-10km/s of total delta-v due to needing to ascend, aerodynamic drag, and other losses.
- Haugsevje 2y agoAhh yes, of course! I guess they are not high enough for geo stationary orbit?
- jadyoyster 2y agoEven if they were high enough they would just fall back to earth. There are lots of videos explaining orbit, this one looks good: https://www.youtube.com/watch?v=bcvnfQlz1x4 https://www.youtube.com/watch?v=bcvnfQlz1x4
- Haugsevje 2y agoThat's a very clarifying video! Suddenly i remembered my pre-college physics:)
- marcyb5st 2y agoGeo stationary orbit is 36000 km give or take. Orbiting however is more about radial velocity. You are sort of constantly falling towards Earth, but you are moving so fast that you always miss it and so you end up orbiting it. A great animation on the subject: https://www.reddit.com/r/Damnthatsinteresting/comments/1btbnk3/orbital_mechanics_in_30_seconds/ https://www.reddit.com/r/Damnthatsinteresting/comments/1btbn...
- pavon 2y agoEven for geostationary you still need to gain a ton of horizontal velocity, more than LEO. You are staying over the same spot on the earth, but the earth is rotating and you need to match that same angular velocity. Being at a higher altitude you need a faster linear velocity to match that angular velocity, since you have a larger circle to travel in the same amount of time.