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Hm, there was one thing that kept troubling me here, but I just found the answer to it. Basically it means that some of our interpretations were wrong. Anyway, suppose we have 3 bodies, let's call them A, B, and C. Say A remains stationary and B and C start moving away from A, both at the speed of 0.6c in opposite directions. So considering that the clocks on B and C are ticking slower than those on A, if we put ourselves in the reference frame of C, it should seem that B is moving away from A at a speed greater than that of 1.2c, while in reality it should actually be slower than 1c.
So here is where we were partially wrong in our earlier conclusions. The real solution is that in all the systems time seems to flow slower for the rest of the universe than it does for the moving object, and that in all the moving systems there seems to be a contraction of space around them. Meaning that the object A would see objects B and C flattened and slowed down, but that the object B would also see the whole universe around it, including the objects A and C slowed down, flattened, and closer to each other.
Now, this may cause the astronaut paradox to seem impossible because both astronauts see the world around them slowed down. But what happens is that when the astronaut makes a U-turn, the time in the universe around him makes a sudden leap as the simultaineity plane between him and his twin make a shift. During his return trip, his time again seems to flow faster than the time of his eartly twin, as well as his earthly twin sees his time going faster than the astronaut's, but when he comes back, his deceleration makes the times resynchronize.
So coming back to the photon or an object moving at near light speed, the universe around it would actually seem to be in a temporal stasis, rather than a fast-forward motion. It would also seem to be flattened out into two dimensions, as the objects towards and away from which the photon or object is moving would seem to be extremely close. But, if the moving object would suddenly slow down to a halt, the universe would make a quick adjustment of its state, where objects around it would speed up in order to make up for the time lost. Additionally, the farther away those objects are, the more making-up they'll have to do, and during slowdown they will seem to be be more fast forwarded than those in the vicinity. Wikipedia rules 
http://en.wikipedia.org/wiki/Twin_paradox
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1+1=10
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