An 18 Billion Mile Journey is almost complete.
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An 18 Billion Mile Journey is almost complete.
1–10 of 11 posts
Re: An 18 Billion Mile Journey is almost complete.
#2It will return to the same position within its orbit relative to the sun, but surely not the "same position in space"? (The solar system has moved a little further around in its orbit within the Milky Way too.)
I'm aware I'm questioning a qualified astrophysicist here - something I am not - so I'll blindly assume it's something to do with default frames of reference until corrected otherwise ;-)
Re: An 18 Billion Mile Journey is almost complete.
#3Which means, for the first time since its discovery, Neptune is about to return to the same position in space that it occupied the day it was discovered. And what date will that be? It will return to the same position within its orbit relative to the sun, but surely not the "same position in space"? (The solar system has moved a little further around in its orbit within the Milky Way too.) I'm aware I'm questioning a…
I wonder, though, it should be in the same position in the sky, right (after accounting for the Earth not necessarily being in sync with regard to its rotation)?
I'm not sure what you mean "after accounting for the Earth not necessarily being in sync"; since it isn't in sync it won't be in the same position. But if you were viewing it from the centre of the Sun, then yes, it would be in the same position in the sky.
Re: An 18 Billion Mile Journey is almost complete.
#4Which means, for the first time since its discovery, Neptune is about to return to the same position in space that it occupied the day it was discovered. And what date will that be? It will return to the same position within its orbit relative to the sun, but surely not the "same position in space"? (The solar system has moved a little further around in its orbit within the Milky Way too.) I'm aware I'm questioning a…
Re: An 18 Billion Mile Journey is almost complete.
#5Which means, for the first time since its discovery, Neptune is about to return to the same position in space that it occupied the day it was discovered. And what date will that be? It will return to the same position within its orbit relative to the sun, but surely not the "same position in space"? (The solar system has moved a little further around in its orbit within the Milky Way too.) I'm aware I'm questioning a…
"Same position in space" isn't well-defined anyway. There's no fixed set of coordinates permeating the entire universe. But it's clear enough what is meant in this case. I wonder, though, it should be in the same position in the sky, right (after accounting for the Earth not necessarily being in sync with regard to its rotation)? I'm not sure what you mean "after accounting for the Earth not necessarily being in sync…
That from some point on Earth (on a similar latitude - accounting for tilt) Neptune would be in the same position in the sky (because other than the tilt, the time of day would likely be different so the longitude of observation should be too).
In writing that, though, I just realized the flaw in my thinking. Not only would the rotation of the Earth not be in sync, nor would its orbit! So the chance of being able to repeat the precise observation at the specified time would be close to nil.
Re: An 18 Billion Mile Journey is almost complete.
#6Which means, for the first time since its discovery, Neptune is about to return to the same position in space that it occupied the day it was discovered. And what date will that be? It will return to the same position within its orbit relative to the sun, but surely not the "same position in space"? (The solar system has moved a little further around in its orbit within the Milky Way too.) I'm aware I'm questioning a…
Re: An 18 Billion Mile Journey is almost complete.
#7Which means, for the first time since its discovery, Neptune is about to return to the same position in space that it occupied the day it was discovered. And what date will that be? It will return to the same position within its orbit relative to the sun, but surely not the "same position in space"? (The solar system has moved a little further around in its orbit within the Milky Way too.) I'm aware I'm questioning a…
Good source for a layman's explanation of how we measure where things are in the sky is Astronomy Cast: http://www.astronomycast.com/astronomy/ep-171-solar-system-m... http://www.astronomycast.com/astronomy/ep-170-coordinate-sys...
Re: An 18 Billion Mile Journey is almost complete.
#8Which means, for the first time since its discovery, Neptune is about to return to the same position in space that it occupied the day it was discovered. And what date will that be? It will return to the same position within its orbit relative to the sun, but surely not the "same position in space"? (The solar system has moved a little further around in its orbit within the Milky Way too.) I'm aware I'm questioning a…
Re: An 18 Billion Mile Journey is almost complete.
#9Which means, for the first time since its discovery, Neptune is about to return to the same position in space that it occupied the day it was discovered. And what date will that be? It will return to the same position within its orbit relative to the sun, but surely not the "same position in space"? (The solar system has moved a little further around in its orbit within the Milky Way too.) I'm aware I'm questioning a…
Good source for a layman's explanation of how we measure where things are in the sky is Astronomy Cast: http://www.astronomycast.com/astronomy/ep-171-solar-system-m... http://www.astronomycast.com/astronomy/ep-170-coordinate-sys...
Re: An 18 Billion Mile Journey is almost complete.
#10http://voeventnet.caltech.edu/feeds/Catalina.shtml
The essence is to make multiple passes over the sky, comparing current images with past images. Large image-differences represent moving objects, which are looked up in a database. If they are new, they are entered into an event queue, represented above. In principle, other robotic telescopes can scoop up promising events and follow up on them.