Easy lessons in Einstein : $b A discussion of the more intelligible features of the theory of relativitySlosson, Edwin E. (Edwin Emery)
Science
Easy lessons in Einstein : $b A discussion of the more intelligible features of the theory of relativity
Slosson, Edwin E. (Edwin Emery)
Einstein, Albert, 1879-1955; Relativity (Physics)
The earth moves--if it does move--so quietly and silently that we feel
no jar or engine-beat to tell us of its motion. If the earth were
perpetually shrouded by clouds could we find out its motion through
space or even its rotation? And do we actually get any proof on this
point from observation of the heavenly bodies? We see them moving about
relatively to each other and we can represent their movements most
easily by supposing that the moon goes around the earth and that the
earth and the rest of the planets go around the sun. But is this whole
solar system in motion? So it seems when we compare it with the stars.
But who knows if the solar system and all the visible stars are not
altogether moving off through space at the rate of a mile or a thousand
miles a second? How can we tell unless we have something that is still
and fixed to measure the motion by?
It seemed until recently that we had such a fixture, the ether. We know
of the sun and stars only from the light that comes from them to us.
Light, as we can prove by simple experiments, consists of wave motion.
Now, can you have wave motion without something to wave? Sound waves
are conveyed by air but there is no air between the earth and the sun.
So as nothing could be found to fill this empty space scientists had
to invent something to satisfy their sense of the fitness of things.
The ether was the product of their excogitations. It was a British
invention, devised in the Royal Institution, whence have come so many
useful theories and discoveries.
The ether, as Salisbury said, is simply the nominative of the verb “to
undulate.” It was conceived of as a sort of transparent jelly filling
all space, more rigid than any solid, more frictionless than any fluid,
more easily penetrated than any gas. It must be more elastic than steel
and yet so rarefied that ordinary matter passes through it without the
slightest effort. The ether is supposed to slip between the particles
of the rushing earth as the wind blows through the branches of a tree.
For many years after its invention the ether had nothing to do
except to carry light about from one place to another. But when
the electro-magnetic waves of the wireless telegraph were produced
something was needed also to carry them and this new task was laid upon
the shoulders of the uncomplaining ether. When Röntgen discovered the
X-rays, whose waves are 10,000 times shorter than the shortest light
waves, these were turned over to the ether to run. In fact, it got so
that whenever a physicist found any action that he could not explain by
ordinary matter he said: “Let the ether do it,” and that hypothetical
substance apparently answered every purpose until it came to this
question of relative motion.
Public-domain text, read in full here on John Shaqi.
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