Einstein's Theories of Relativity and Gravitation: A selection of material from the essays submitted in the competition for the Eugene Higgins prize of $5,000Bird, J. Malcolm (James Malcolm)
Philosophy
Einstein's Theories of Relativity and Gravitation: A selection of material from the essays submitted in the competition for the Eugene Higgins prize of $5,000
Bird, J. Malcolm (James Malcolm)
Relativity (Physics)
The increase above the time required when the system was at rest
is less in this case than the preceding. Hence, if the apparatus
is moving through the ether, the flashes reflected from $M$ and $N$
will not return at the same instant.
For such velocities as are attainable--even the 18 miles per second of
the earth in its orbit--the difference is less than a hundred-millionth
of the elapsed time. Nevertheless, Michelson and Morley tried to
detect it in their famous experiment.
A beam of light was allowed to fall obliquely upon a clear glass
mirror (placed at $O$ in the diagram) which reflected part of it
toward the mirror, $M$, and let the rest pass through to the mirror
$N$. By reuniting the beams after their round trips, it was possible
to tell whether one had gained upon the other by even a small fraction
of the time of vibration of a single light wave. The apparatus was
so sensitive that the predicted difference, though amounting to less
than a millionth part of a billionth of a second, could easily have
been measured; but they actually found no difference at all--though
the earth is certainly in motion.
Other optical experiments, more intricate, and even more delicate,
were attempted, with the same object of detecting the motion of the
earth through the ether; and they all failed.
THE SPECIAL THEORY AND ITS SURPRISING CONSEQUENCES
It was upon these facts that Einstein based his original, or "special"
theory of Relativity. He assumed boldly that the universe is so
constituted that uniform straight-ahead motion of an observer and all
his apparatus will not produce any difference whatever in the result
of any physical process or experiment of any kind. Granting this,
it follows that if all objects in the visible universe were moving
uniformly together in any direction, no matter how fast, we could
not find this out at all. We cannot determine whether the universe,
as a whole, is at rest or in motion, and may as well make one guess
as another. Only the relative motions of its parts can be detected
or studied.
This seems simple and easy enough to understand. But the consequences
which follow from it are extraordinary, and at first acquaintance
seem almost absurd.
Public-domain text, read in full here on John Shaqi.
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