Astronomers need direct and conclusive telescopic evidence, and
this was lacking until Keeler made his remarkable spectroscopic
observation in 1895. The spectroscope is a peculiar instrument,
different in principle from any other used in astronomy; we study
distant objects with it by analyzing the light they send us, rather
than by examining and measuring the details of their visible
surfaces. The reader will recall that according to the modern
undulatory theory, light consists simply of a series of waves.
Now, the nature of waves is very far from being understood in the
popular mind. Most people, for instance, think that the waves of
ocean consist of great masses of water rolling along the surface.
This notion doubtless arises from the behavior of waves when
they break upon the shore, forming what we call surf. When a
wave meets with an immovable body like a sand beach, the wave is
broken, and the water really does roll upon the beach. But this
is an exceptional case. Farther away from the shore, where the
waves are unimpeded, they consist simply of particles of water
moving straight up and down. None of the water is carried by mere
wave-action away from the point over which it was situated at first.
Tides or other causes may move the water, but not simple
wave-motion alone. That this is so can be proved easily. If a chip
of wood be thrown overboard from a ship at sea it will be seen to
rise and fall a long time on the waves, but it will not move.
Similarly, wind-waves are often quite conspicuous on a field of
grain; but they are caused by the individual grain particles moving
up and down. The grain certainly cannot travel over the ground,
since each particle is fast to its own stalk.
But while the particles do not travel, the wave-disturbance
does. At times it is transmitted to a considerable distance from
the point where it was first set in motion. Thus, when a stone
is dropped into still water, the disturbance (though not the
water) travels in ever-widening circles, until at last it becomes
too feeble for us to perceive. Light is just such a travelling
wave-disturbance. Beginning, perhaps, in some distant star, it
travels through space, and finally the wave impinges on our eyes
like the ocean-wave breaking on a sand beach. Such a light-wave
affects the eye in some mysterious way. We call it "seeing."
Public-domain text, read in full here on John Shaqi.
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