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You said that "Einstein's theories lead to the conclusion that observers in different inertial frames of reference (i.e. observers with differing, but constant velocities relative to the thing being observed) will observe different inertial masses in the body being observed. However, there is no variance with regard to the direction of the force." I might be making a mistake, but shouldn't you be a little careful about this? If you rotate the frame, it's just fine as an inertial frame. But obviously, the force will have a different direction. But when you apply it to the two frames at hand, there is no rotation--just translation so the force has the same direction. (Also, does the other stuff I added look good?) [[User:AndyFrankinson|AndyFrankinson]] 16:03, 26 January 2012 (EST)
 
You said that "Einstein's theories lead to the conclusion that observers in different inertial frames of reference (i.e. observers with differing, but constant velocities relative to the thing being observed) will observe different inertial masses in the body being observed. However, there is no variance with regard to the direction of the force." I might be making a mistake, but shouldn't you be a little careful about this? If you rotate the frame, it's just fine as an inertial frame. But obviously, the force will have a different direction. But when you apply it to the two frames at hand, there is no rotation--just translation so the force has the same direction. (Also, does the other stuff I added look good?) [[User:AndyFrankinson|AndyFrankinson]] 16:03, 26 January 2012 (EST)
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:Yes, that was a bit ambiguous - I've tidied it up. --[[User:QPR|QPR]] 10:39, 27 January 2012 (EST)
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