Astronomy of To-day: A Popular Introduction in Non-Technical LanguageDolmage, Cecil Goodrich Julius
Science
Astronomy of To-day: A Popular Introduction in Non-Technical Language
Dolmage, Cecil Goodrich Julius
Astronomy
It is, indeed, a strange irony of fate that this very same production
of colour, which so hindered astronomy in the past, should have aided it
in recent years to a remarkable degree. If sunlight, for instance, be
admitted through a narrow slit before it falls upon a glass prism, it
will issue from the latter in the form of a band of variegated colour,
each colour blending insensibly with the next. The colours arrange
themselves always in the order which we have mentioned. This seeming
band is, in reality, an array of countless coloured images of the
original slit ranged side by side; the colour of each image being the
slightest possible shade different from that next to it. This strip of
colour when produced by sunlight is called the "Solar Spectrum" (see
Fig. 9, p. 123). A similar strip, or _spectrum_, will be produced by any
other light; but the appearance of the strip, with regard to
preponderance of particular colours, will depend upon the character of
that light. Electric light and gas light yield spectra not unlike that
of sunlight; but that of gas is less rich in blue and violet than that
of the sun.
The Spectroscope, an instrument devised for the examination of spectra,
is, in its simplest form, composed of a small tube with a narrow slit
and prism at one end, and an eye-piece at the other. If we drop ordinary
table salt into the flame of a gas light, the flame becomes strongly
yellow. If, then, we observe this yellow flame with the spectroscope, we
find that its spectrum consists almost entirely of two bright yellow
transverse lines. Chemically considered ordinary table salt is sodium
chloride; that is to say, a compound of the metal sodium and the gas
chlorine. Now if other compounds of sodium be experimented with in the
same manner, it will soon be found that these two yellow lines are
characteristic of sodium when turned into vapour by great heat. In the
same manner it can be ascertained that every element, when heated to a
condition of vapour, gives as its spectrum a set of lines peculiar to
itself. Thus the spectroscope enables us to find out the composition of
substances when they are reduced to vapour in the laboratory.
[Illustration: FIG. 9.--The Solar Spectrum.]
In order to increase the power of a spectroscope, it is necessary to
add to the number of prisms. Each extra prism has the effect of
lengthening the coloured strip still more, so that lines, which at first
appeared to be single merely through being crowded together, are
eventually drawn apart and become separately distinguishable.
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