The Outline of Science, Vol. 1 (of 4): A Plain Story Simply ToldThomson, J. Arthur (John Arthur)
Science
The Outline of Science, Vol. 1 (of 4): A Plain Story Simply Told
Thomson, J. Arthur (John Arthur)
Science
No doubt it seems far more wonderful to discover this within the walls
of a laboratory, but it was done as long ago as 1850. A cogged wheel is
so mounted that a ray of light passes between two of the teeth and is
reflected back from a mirror. Now, slight as is the fraction of a second
which light takes to travel that distance, it is possible to give such
speed to the wheel that the next tooth catches the ray of light on its
return and cuts it off. The speed is increased still further until the
ray of light returns to the eye of the observer through the notch _next_
to the one by which it had passed to the mirror! The speed of the wheel
was known, and it was thus possible again to gather the velocity of
light. If the shortest waves are 1/67,000 of an inch in length, and
light travels at 186,000 miles a second, any person can work out that
about 800 trillion waves enter the eye in a second when we see "violet."
Sorting out Light-waves
The waves sent out on every side by the energetic electrons become
faintly visible to us when they reach about 1/35,000 of an inch. As they
become shorter and more rapid, as the electrons increase their speed, we
get, in succession, the colours red, orange, yellow, green, blue,
indigo, and violet. Each distinct sensation of colour means a wave of
different length. When they are all mingled together, as in the light of
the sun, we get white light. When this white light passes through glass,
the speed of the waves is lessened; and, if the ray of light falls
obliquely on a triangular piece of glass, the waves of different lengths
part company as they travel through it, and the light is spread out in a
band of rainbow-colour. The waves are sorted out according to their
lengths in the "obstacle race" through the glass. Anyone may see this
for himself by holding up a wedge-shaped piece of crystal between the
sunlight and the eye; the prism separates the sunlight into its
constituent colours, and these various colours will be seen quite
readily. Or the thing may be realised in another way. If the seven
colours are painted on a wheel as shown opposite page 280 (in the
proportion shown), and the wheel rapidly revolved on a pivot, the wheel
will appear a dull white, the several colours will not be seen. But
_omit_ one of the colours, then the wheel, when revolved, will not
appear white, but will give the impression of one colour, corresponding
to what the union of six colours gives. Another experiment will show
that some bodies held up between the eye and a white light will not
permit all the rays to pass through, but will intercept some; a body
that intercepts all the seven rays except red will give the impression
of red, or if all the rays except violet, then violet will be the colour
seen.
[Illustration: _Photo: H. J. Shepstone._
LIGHTNING
Public-domain text, read in full here on John Shaqi.
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