When a beam of light falls upon a body, and the whole or a part of that
which enters its substance totally disappears, we are entitled to say,
that it is detained by some power exercised by the particles of the
body over the particles of light. When this light is said to be lost
by a multitude of reflections or refractions, the statement is not
only hypothetical, but it is an hypothesis incompatible with optical
principles. That the light detained within bodies has been stopped by
the attractive force of the particles seems to be highly probable,
and the mind will not feel any repugnance to admit that the particles
of all bodies, whether solid, fluid, or aëriform, have a specific
affinity for the particles of light. Considering light, therefore, as
material, it is not difficult to comprehend how it should, like other
elementary substances, enter into combination with bodies, and produce
many chymical and physical effects, but particularly the phenomena of
transparency, opacity, and colour.
In _transparent_ colourless bodies, such as water and glass, the
intromitted light experiences a considerable loss, because a certain
number of its particles are attracted and detained by the atoms of the
water or glass, and the light which emerges is colourless, because the
particles exercise a proportional action over all the simple colours
which compose white light.
When the transparent body has any decided _colour_, such as those
enumerated in Class I., then the particles of the body have exercised
a specific attraction over those rays of white light which are
complementary to those which compose the colour of the transmitted
light. If the transparent body, for example, is _red_, then its
particles have detained the green rays which entered into the incident
light, or certain other rays, which with the red are necessary to
compose white light. In compound bodies, like some of the artificial
glasses, the particles will attract and detain rays of light of
different colours, as may be seen by analyzing the transmitted light
with a prism, which will exhibit a spectrum deprived of all the rays
which have been detained. In black bodies the particles exercise a
powerful attraction over light, and detain all the intromitted rays.
When coloured bodies are opaque, so as to exhibit their colours
principally by reflection, the light which is reflected back to the
observer has received its colour from transmission through part of the
thickness of the body, or, what is the same thing, the colour reflected
to the eye is complementary to that which has been detained by the
particles of the body while the light is passing and repassing through
a thickness terminated by the reflecting surfaces; and as only a part
of this light is reflected, as in the case of leaves and flowers, the
transmitted light must have the same colour as the reflected light.
Public-domain text, read in full here on John Shaqi.
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