The earliest of Newton's great achievements in natural philosophy was
his detection of the composite character of light. That a beam of
ordinary sunlight is, in fact, a mixture of a very great number of
different-coloured lights, is a doctrine now familiar to every one
who has the slightest education in physical science. We must,
however, remember that this discovery was really a tremendous advance
in knowledge at the time when Newton announced it.
[PLATE: DIAGRAM OF A SUNBEAM.]
We here give the little diagram originally drawn by Newton, to
explain the experiment by which he first learned the composition of
light. A sunbeam is admitted into a darkened room through an
opening, H, in a shutter. This beam when not interfered with will
travel in a straight line to the screen, and there reproduce a bright
spot of the same shape as the hole in the shutter. If, however, a
prism of glass, A B C, be introduced so that the beam traverse it,
then it will be seen at once that the light is deflected from its
original track. There is, however, a further and most important
change which takes place. The spot of light is not alone removed to
another part of the screen, but it becomes spread out into a long
band beautifully coloured, and exhibiting the hues of the rainbow. At
the top are the violet rays, and then in descending order we have the
indigo, blue, green, yellow, orange, and red.
The circumstance in this phenomenon which appears to have
particularly arrested Newton's attention, was the elongation which
the luminous spot underwent in consequence of its passage through the
prism. When the prism was absent the spot was nearly circular, but
when the prism was introduced the spot was about five times as long
as it was broad. To ascertain the explanation of this was the first
problem to be solved. It seemed natural to suppose that it might be
due to the thickness of the glass in the prism which the light
traversed, or to the angle of incidence at which the light fell upon
the prism. He found, however, upon careful trial, that the phenomenon
could not be thus accounted for. It was not until after much patient
labour that the true explanation dawned upon him. He discovered that
though the beam of white light looks so pure and so simple, yet in
reality it is composed of differently coloured lights blended
together. These are, of course, indistinguishable in the compound
beam, but they are separated or disentangled, so to speak, by the
action of the prism. The rays at the blue end of the spectrum are
more powerfully deflected by the action of the glass than are the
rays at the red end. Thus, the rays variously coloured red, orange,
yellow, green, blue, indigo, violet, are each conducted to a
different part of the screen. In this way the prism has the effect
of exhibiting the constitution of the composite beam of light.
Public-domain text, read in full here on John Shaqi.
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