Earlier quoted context omitted.
This is silly semantics. Jupiter and the Sun both orbit the center of mass of the Jupiter-Sun system. The article is making the point that for Jupiter and the Sun this point happens to be just outside the surface of the Sun. It's much simpler to say "Jupiter orbits the Sun" than "Jupiter and the Sun both orbit the center of mass of the Jupiter-Sun system". You can think of the former as a shorthand for the latter.
That's true of all planets no? The Earth and sun orbit the center of mass of the Earth-sun system.
New Evidence That All Stars Are Born in Pairs
101–110 of 111 posts
Re: New Evidence That All Stars Are Born in Pairs
#102So we lost our partner? So sad.... ;) I remember reading, nearest proxima century is also a group of stars.
https://en.wikipedia.org/wiki/Nemesis_%28hypothetical_star%2...
Re: New Evidence That All Stars Are Born in Pairs
#10351:47-49 47. We constructed the universe with power, and We are expanding it. 48. And the earth—We spread it out—How well We prepared it! 49. We created all things in pairs, so that you may reflect and ponder.
And that the universe is actually expanding is something that wasn't known at the time of Mohammad.
Re: New Evidence That All Stars Are Born in Pairs
#104Earlier quoted context omitted.
This is silly semantics. Jupiter and the Sun both orbit the center of mass of the Jupiter-Sun system. The article is making the point that for Jupiter and the Sun this point happens to be just outside the surface of the Sun. It's much simpler to say "Jupiter orbits the Sun" than "Jupiter and the Sun both orbit the center of mass of the Jupiter-Sun system". You can think of the former as a shorthand for the latter.
That's true of all planets no? The Earth and sun orbit the center of mass of the Earth-sun system.
Re: New Evidence That All Stars Are Born in Pairs
#105Earlier quoted context omitted.
That's true of all planets no? The Earth and sun orbit the center of mass of the Earth-sun system.
I wonder? If Jupiter has the power to move the Sun, then other planets should be affected to. From this and the fact planet orbits are still said elliptical, I infer that other planets actually also orbit the Jupiter-Sun barycenter. Correct?
To the extent that the planets orbits can be considered elliptical, they orbit the barycenter of the entire solar system, including the Sun, Jupiter, and the other planets. Where that's located relative to the Sun-Jupiter barycenter changes a bit, as the Sun-Jupiter system as a whole orbits around the common barycenter.
But we can make some estimates for how big that offset is. The Sun-Jupiter barycenter is offset from the center of the sun by M_{Jupiter}/(M_{Sun} + M_{Jupiter}) * R_{Sun-Jupiter}, here M_{X} is the mass of X and R_{X-Y} is the distance from X to Y. At aphelion, Jupiter is at 8.16e11m from the sun according to https://en.wikipedia.org/wiki/Jupiter, and its mass is about 9.5e-4 that of the sun, so the offset ends up being about 7.8e8m. The radius of the sun is about 6.96e8m, for comparison (according to https://en.wikipedia.org/wiki/Sun).
OK, what about the other planets? Saturn is about 1/3 the mass of Jupiter and about 2x further from the sun. So its impact on the overall solar system barycenter is about 2/3 that of Jupiter. Neptune is about 18x lighter than Jupiter and about 6x further away, so that's another 1/3. Uranus is about 22x lighter than Jupiter and about 4x further away, so that's another 1/6-1/5. The other planets don't really matter for this calculation with the number of significant figures we're using, because they're both lighter and closer in (e.g. Earth is about 1/316 the mass of Jupiter and 5x closer to the sun, so its impact is about 1/1500 that of Jupiter).
So if Jupiter, Saturn, Uranus, and Neptune all happened to line up the barycenter of the Sun-Jupiter system would be about halfway between the center of the sun and the solar system barycenter. To the extent that they don't all line up, the separation between the Sun-Jupiter and overall barycenters will be smaller. And if Saturn and Neptune both line up on the opposite side from Jupiter, that puts the solar system barycenter pretty close to the center of the sun.
Re: New Evidence That All Stars Are Born in Pairs
#106Earlier quoted context omitted.
This is silly semantics. Jupiter and the Sun both orbit the center of mass of the Jupiter-Sun system. The article is making the point that for Jupiter and the Sun this point happens to be just outside the surface of the Sun. It's much simpler to say "Jupiter orbits the Sun" than "Jupiter and the Sun both orbit the center of mass of the Jupiter-Sun system". You can think of the former as a shorthand for the latter.
But doesn't this show that the main players of the solar system are the sun and Jupiter? Apologies for the source, and my clear lack of knowledge in astronomy.
Re: New Evidence That All Stars Are Born in Pairs
#107I know this really isn't the place for religion but somehow the Quran talks about these things: 51:47-49 47. We constructed the universe with power, and We are expanding it. 48. And the earth—We spread it out—How well We prepared it! 49. We created all things in pairs, so that you may reflect and ponder. And that the universe is actually expanding is something that wasn't known at the time of Mohammad.
Re: New Evidence That All Stars Are Born in Pairs
#108Earlier quoted context omitted.
Not impossible, but rather unlikely. According to TFA, the partner star was much further out. Also, gas giant planets Jupiter's size are fairly common I thought (this knowledge may be outdated).
TFA? I'm getting "The Force Awakens". Or "Teach For America".
Re: New Evidence That All Stars Are Born in Pairs
#109Earlier quoted context omitted.
is it possible that it's just on an extreme orbit and we may one day reconnect?
We would easily detect a star closer to the Sun than our known stellar neighbours. Any former sibling star further away from us than that would be affected by the gravity of other stars more than by the gravity of the Sun.
Re: New Evidence That All Stars Are Born in Pairs
#110Earlier quoted context omitted.
We would easily detect a star closer to the Sun than our known stellar neighbours. Any former sibling star further away from us than that would be affected by the gravity of other stars more than by the gravity of the Sun.
How far could the star have travelled in 200 million years? I find it hard to think it could be more than a dozen light years away. And the list of stars within, say, 20 light years, is finite.
The sun is more than 4 billion years old while 200m years is a bit less than the period for one orbit of the Galaxy (225-250 my). The Sun has completed more than 20 orbits in its lifetime. Even a 0.1% difference in galactic orbital period between the sun and it's twin would put them 3,000 light-years apart by now.