apinkpwny said:
this is exactly what i meant thank you!one of us feels that as soon as the person traveling at a high speed comes to rest the clock will snap back to the stationary person's time.
if you could please explain in a simple way why one of us is wrong i would be much appreciated.
Jobey said:
But time itself would not actually change? correct? It would just appear that it has changed.
Symbiosis said:
Time relative to the person on the shuttle appears normal, just as time standing still on Earth appears normal. My question would be: is the OBSERVED time less and not the ACTUAL time?
How does the actual time change when it's relative to the observer (guy on the ground or shuttle, not third party)?
Basically, what I'm asking is doesn't time only appear to go slower from guy's perspective from Earth, but once the shuttle guy stops, it should catch up to him (Earth guy), because the information is no longer traveling at near the speed of light (a.k.a. delayed).
Wow, I feel like I'm being ganged up on. Do you guys all know each other?
OK, apinkpwny also didn't explain how the shuttle was going to travel, he just said it traveled near the speed of light. So I cannot tell you about the OBSERVED time because that depends on whether the shuttle traveled 50 years away from the Earth and then turned around and traveled another 50 years back, or maybe the shuttle took a big circular path so that it was always "turning around" the whole trip, or maybe it was in orbit around the Earth for the whole time.
As far as the ACTUAL time goes, in order to address that issue, we have to settle on a theory that includes the definition of time. Einstein's Special Relativity is one such theory that does this and the one that this forum is dedicated to providing an environment for learning. So using SR, you need to settle on a Frame of Reference in which time has a defined meaning. You can pick any FoR but it always makes sense to pick one in which the computations will be easier and that would be one in which the Earth remains at rest. (We always ignore the rotation of the Earth and its orbit around the Sun when we do these kinds of thought experiments.)
So according to how SR defines time, it progresses for each observer at a rate determined by the speed of that observer in the FoR. The faster the observer is traveling, the slower his clock ticks. If an observer remains stationary, his clock ticks normally. So the Earth observer is stationary, time progresses normally for him, and the shuttle is traveling at a high speed so time progresses at a slower rate for him. It's just as simple as that. If you analyze the situation from any other FoR, you will get the same answer, as far as the final result, but the computations will be much more difficult, in fact, so difficult that you can't do it in your head, you will have to get out your calculator and follow a bunch of equations, etc, etc, etc.