On Molecular and Microscopic Science, Volume 1 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 1 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
Matter has a decomposing and an elective power with regard to both
radiant light and heat; most coloured bodies, such as flowers, green
leaves, dyed cloth, &c., though seen by reflection, owe their colour to
absorption. The light by which they are seen is reflected, but it is not
in reflection that the selection of the rays is made which causes the
objects to appear coloured. When light falls upon red cloth, a small
portion is reflected at the outer surfaces of the fibres, and this
portion, if it could be observed alone, would be found to be colourless.
The greater portion of the light penetrates into the fibres, when it
immediately begins to suffer absorption on the part of the colouring
matter. On arriving at the second surface of the fibre, a portion is
reflected and a portion passes on, to be afterwards reflected from, or
absorbed by, fibres lying more deeply. At each reflection the various
kinds of light are reflected in as nearly as possible the same
proportion, but in passing across the fibres while going and returning
they suffer very unequal absorption on the part of the colouring matter;
so that in the aggregation of the light perceived the different
components of white light are present in proportions widely different
from those they bear to each other in white light itself, and the result
is a vivid colouring.
In certain substances however, as gold and copper, the different
components of white light are reflected with different degrees of
intensity, and the light becomes coloured by these reflections. Gold is
yellow by reflection; red cloth is red by absorption. In the same sense,
physically speaking, in which the red cloth is red, gold is not yellow
but blue or green; such is in fact the colour of gold by transmission
through gold leaf, and therefore gold is greenish blue by absorption. In
this case we see that while the substance copiously reflects and
intensely absorbs rays of all kinds, it more copiously reflects the less
refrangible rays with respect to which it is more intensely opaque. In
general absorption and radiation are independent of colour.
There is a vast diversity in the property which substances possess with
regard to the transmission of radiant light and heat; glass, for
instance, transmits light abundantly, but is impervious to heat from
non-luminous sources; while other substances, which are altogether
opaque to light, transmit heat copiously, as the bisulphide of carbon,
which of all liquids is the most diathermic, while water in all its
forms is almost impervious to heat.
Public-domain text, read in full here on John Shaqi.
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