How Can Initial Distance Affect Time Calculations in Spacetime Problems?

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Homework Statement



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Homework Equations




The Attempt at a Solution


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I am not sure for part a and part e. Especially for part e, without the initial distance, how can I find the time?

Can you also help me to check whether my answers are correct?
 

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Your initial work is unnecessary for answering part (a). The problem states that "transmission produces a Samantha identical to the original in every respect"; in particular, that means she's the same age when she is transmitted from Earth and when she is reassembled on Zircon.

Your answers to b, c, and d are correct. Your work for part (e) completely misses the mark. I'm not sure what you're doing there.
 
vela said:
Your initial work is unnecessary for answering part (a). The problem states that "transmission produces a Samantha identical to the original in every respect"; in particular, that means she's the same age when she is transmitted from Earth and when she is reassembled on Zircon.

Your answers to b, c, and d are correct. Your work for part (e) completely misses the mark. I'm not sure what you're doing there.

In fact I don't know how to complete part e, I just try sometime seem possible.
Can you help me with part e?
 
vela said:
Part (e) is asking the same question as part (b). What's the difference between the two cases?

They are different.
In part b, the object doesn't move, however in part e, it does.
So the time taken to reach the destination in part e is longer than part b, and the question is I don't know how long does it take.
 
vela said:
Did the time taken to reach and return from Zircon affect how much Samantha aged?

Oh... I understand now thanks
 
Why?
The time taken to reach and return from Zircon won't affect the age, I think.

It seems it is very difficult for me...
 
Unchanged data doesn't "age"

Questions (a) through (d) include no relative velocities, so the Lorentz transform is unneeded and the solutions are simple.

Question (e) makes it clear that the transporternaut sees local clocks advance by one year, therefore that transporternaut ages one year. Since that is what the question asks, the Lorentz transform is unneeded there, also.
 
fleem said:
Question (e) makes it clear that the transporternaut sees local clocks advance by one year, therefore that transporternaut ages one year. Since that is what the question asks, the Lorentz transform is unneeded there, also.
Oops. Yes, fleem's right. Sorry, athrun, I misled you.
 
Oh thank everyone!
By doing this question, it seems I can get a conclusion.
Everythings move in speed of light do not age.

It is correct?
 
athrun200 said:
Oh thank everyone!
By doing this question, it seems I can get a conclusion.
Everythings move in speed of light do not age.

It is correct?

Correct.

Not only that, but in this case even if the data moved slower than light one could argue that it does not age, because the data (presumably) does not change.