The Story of the HeavensBall, Robert S. (Robert Stawell)
History
The Story of the Heavens
Ball, Robert S. (Robert Stawell)
Astronomy
The problem is now easily stated. A ray of light is to be sent from the
observer to the distant station, and the time occupied by that ray in
the journey is to be measured. We may suppose that the observer, by a
suitable contrivance, has arranged a lantern from which a thin ray of
light issues. Let us assume that this travels all the way to the distant
station, and there falls upon the surface of a reflecting mirror.
Instantly it will be diverted by reflection into a new direction
depending upon the inclination of the mirror. By suitable adjustment the
latter can be so placed that the light shall fall perpendicularly upon
it, in which case the ray will of course return along the direction in
which it came. Let the mirror be fixed in this position throughout the
course of the experiments. It follows that a ray of light starting from
the lantern will be returned to the lantern after it has made the
journey to the distant station and back again. Imagine, then, a little
shutter placed in front of the lantern. We open the shutter, the ray
streams forth to the remote reflector, and back again through the
opening. But now, after having allowed the ray to pass through the
shutter, suppose we try and close it before the ray has had time to get
back again. What fingers could be nimble enough to do this? Even if the
distant station were ten miles away, so that the light had a journey of
ten miles in going to the mirror and ten miles in coming back, yet the
whole course would be accomplished in about the nine-thousandth part of
a second--a period so short that even were it a thousand times as long
it would hardly enable manual dexterity to close the aperture. Yet a
shutter can be constructed which shall be sufficiently delicate for the
purpose.
[Illustration: Fig. 63.--Mode of Measuring the Velocity of Light.]
The principle of this beautiful method will be sufficiently obvious from
the diagram on this page (Fig. 63), which has been taken from Newcomb's
"Popular Astronomy." The figure exhibits the lantern and the observer,
and a large wheel with projecting teeth. Each tooth as it passes round
eclipses the beam of light emerging from the lantern, and also the eye,
which is of course directed to the mirror at the distant station. In the
position of the wheel here shown the ray from the lantern will pass to
the mirror and back so as to be visible to the eye; but if the wheel be
rotating, it may so happen that the beam after leaving the lantern will
not have time to return before the next tooth of the wheel comes in
front of the eye and screens it. If the wheel be urged still faster, the
next tooth may have passed the eye, so that the ray again becomes
visible. The speed at which the wheel is rotating can be measured. We
can thus determine the time taken by one of the teeth to pass in front
of the eye; we have accordingly a measure of the time occupied by the
ray of light in the double journey, and hence we have a measurement of
the velocity of light.
Public-domain text, read in full here on John Shaqi.
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