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Navy Astronaut Mark Kelly's space worn CONA Breitling auction begins...

yakboyslim

Well-Known Member
None
It slows down for someone looking from the outside in, not for the person at that speed. Hence the "relative" part of "relativity!"

Exactly. Each watch thinks it is the "slow watch" and that the other is the one moving really fast. Hence the problem appears opposite depending on which watch is used as the reference. But both are equally right. Watch A says watch B went :55 in his 1:00 and Watch B says Watch A went :55 in his 1:00.


That's also why noone except cosmologists need to care, because we are always the "slow watch."

If you want to really confuse things you can think of length contraction (objects going very fast appear shorter) in this paradox. A 33 ft T-6A going near the speed of light can appear to fit in a 20 ft garage. But inside the T-6 the pilot would say the garage appears to be only 12 ft long and the T-6 is normal size. Both are correct.

BTW, excuse my nerd-gasm thread jack here. I busted out my textbook, I'm really bored, and I need this...
 

Jim123

DD-214 in hand and I'm gonna party like it's 1998
pilot
Makes no difference as long as they're both falling at 0 G.

An African shuttle, maybe, but not a European shuttle.

french-soldiers-monty-python.jpg
 

Harrier Dude

Living the dream
I would initially suspect that it's nearly impossible to fall at 0 G. Orbits are a 1 G freefall with a sufficiently large tangential velocity.

Really? What does the G-meter read while doing a ridgeline crossing, inverted, in a space shuttle on a treadmill, approaching the speed of light.

That is the true question.
 

TheBubba

I Can Has Leadership!
None

42 is the wrong answer, as evidenced by the fact that we still exist. If it were the correct answer, then the question and answer would be known simultaneously, causing the known universe to wink out of existence and be replaced my something even more bizarre and inexplicable.
 
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