Animal behavior; Animals -- Color; Plants -- Color
Though we cannot see these waves with the material eye, they are visible
indeed to the mental eye; and are as amenable to experimental research
as the mightiest waves of the sea. Still, to render this subject
clearer, we will use the analogy of sound. A musical note, we all know,
is the effect upon our ears of regularly recurring vibrations. A
pianoforte wire emits a given note, or in other words, vibrates at a
certain and constant rate. These vibrations are taken up by the air, and
by it communicated to the ear, and the sensation of sound is produced.
Here we see the wire impressing its motion on the air, and the air
communicating its motion to the ear; but if another wire similar in all
respects is near, it will also be set in motion, and emit its note; and
so will any other body that can vibrate in unison. Further, the note of
the pianoforte string is not a simple tone, but superposed, as it were,
upon the fundamental note, are a series of higher tones, called
harmonics, which give richness. Now, a ray of sun-light may be likened
to such a note; it consists not of waves all of a certain length or
velocity, but of numbers of waves of different lengths and speed. When
all these fall upon the eye, the sensation of white light is produced,
white light being the compound effect, like the richness of the tone of
the wire and its harmonies; or we may look upon it as a luminous chord.
When light strikes on any body, part or all is reflected to the eye. If
all the waves are thus reflected equally, the result is whiteness. If
only a part is reflected, the effect is colour, the tint depending upon
the particular waves reflected. If none of the waves are reflected, the
result is blackness.
Colour, then, depends upon the nature of the body reflecting light. The
exact nature of the action of the body upon the light is not known, but
depends most probably upon the molecular condition of the surface.
Bodies which allow the light to pass through them, are in like manner
coloured according to the waves they allow to pass.
We find in nature, however, a somewhat different class of colour,
namely, the iridescent tints, like mother of pearl or shot silk, which
give splendour to such butterflies, as some Morphos and the Purple
Emperor. These are called diffraction colours, and are caused by minute
lines upon the reflecting surface, or by thin transparent films. These
lines or films must be so minute that the tiny light waves are broken up
among them, and are hence reflected irregularly to the eye.
Public-domain text, read in full here on John Shaqi.
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