On the Connexion of the Physical SciencesSomerville, Mary
Science
On the Connexion of the Physical Sciences
Somerville, Mary
Physical sciences; Science
When the prism is very perfect and the sunbeam small, so that the
spectrum may be received on a sheet of white paper in its utmost state
of purity, it presents the appearance of a riband shaded with all the
prismatic colours, having its breadth irregularly striped or subdivided
by an indefinite number of dark, and sometimes black lines. The greater
number of these rayless lines are so extremely narrow that it is
impossible to see them in ordinary circumstances. The best method is to
receive the spectrum on the object-glass of a telescope, so as to
magnify them sufficiently to render them visible. This experiment may
also be made, but in an imperfect manner, by viewing a narrow slit
between two nearly closed window-shutters through a very excellent glass
prism held close to the eye, with its refracting angle parallel to the
line of light. The rayless lines in the red portion of the spectrum
become most visible as the sun approaches the horizon, while those in
the blue extremity are most obvious in the middle of the day. When the
spectrum is formed by the sun’s rays, either direct or indirect—as from
the sky, clouds, rainbow, moon, or planets—the black bands are always
found to be in the same parts of the spectrum, and under all
circumstances to maintain the same relative positions. Similar dark
lines are also seen in the light of the stars, in the electric light,
and in the flame of combustible substances, though differently arranged,
each star and each flame having a system of dark lines peculiar to
itself. Dr. Wollaston and M. Fraunhofer, of Munich, discovered these
lines deficient of rays independently of each other. M. Fraunhofer found
that their number extends to nearly six hundred, but they are much more
numerous. There are bright lines in the solar spectrum which also
maintain a fixed position. Among the dark lines, M. Fraunhofer selected
seven of the most remarkable, and determined their distances so
accurately, that they now form standard and invariable points of
reference for measuring the refractive powers of different media on the
rays of light, which renders this department of optics as exact as any
of the physical sciences. These lines are designated by the letters of
the alphabet, beginning with B, which is in the red near the end of the
spectrum; C is farther advanced in the red; D is in the orange; E in the
green; F in the blue; G in the indigo; and H in the violet. By means of
these fixed points, M. Fraunhofer has ascertained from prismatic
observation the refrangibility of seven of the principal rays in each of
ten different substances solid and liquid. The refraction increased in
all from the red to the violet end of the spectrum. The rays that are
wanting in the solar spectrum, which occasion the dark lines, were
supposed to be absorbed by the atmosphere of the sun. But the annular
eclipse which happened on the 15th of May, 1836, afforded Professor
Forbes the means of proving that the dark lines in question cannot be
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