Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
Then follows the development of the comet's tail, perhaps more striking
than anything that has preceded it. Here a genuine repulsion from the
sun appears to come into play. It may be an electrical repulsion. Much
of the material projected from the comet's nucleus, seems to be driven
backward or repelled by the sun, and it is this that goes to form the
tail. The particles which form the tail then travel in modified paths
which nevertheless can be calculated. The tail is made up of these
luminous particles and it expands in space much in the form of a hollow,
horn-shaped cone, the nucleus being near the tip of the horn.
Some comets possess multiple tails with different degrees of curvature,
Donati's for example. Usually there is a nearly straight central dark
space, marking the axis of the comet, and following the nucleus. But
occasionally this is replaced by a thin light streak very much less in
breadth than the diameter of the head. Cometary tails are sometimes 100
million miles in length.
Three different types of cometary tails are recognized. First, the long
straight ones, apparently made up of matter repelled by the sun twelve
to fifteen times more powerfully than gravitation attracts it. Such
particles must be brushed away from the comet's head with a velocity of
perhaps five miles a second, and their speed is continually increasing.
Probably these straight tails are due to hydrogen. The second type tails
are somewhat curved, or plume-like, and they form the most common type
of cometary tail. In them the sun's repulsion is perhaps twice its
gravitational attraction, and hydrocarbons in some form appear to be
responsible for tails of this character. Then there is a third type,
much less often seen, short and quickly curving, probably due to heavier
vapors, as of chlorine, or iron, or sodium, in which the repulsive force
is only a small fraction of that of gravitation.
Many features of this theory of cometary tails are borne out by
examination of their light with the spectroscope, although the
investigation is as yet fragmentary. It is evident that the tail of a
comet is formed at the expense of the substance of the nucleus and head;
so that the matter repelled is forever dissipated through the regions of
space which the comet has traveled. Comets must lose much of their
original substance every time they return to perihelion. Comets actually
age, therefore, and grow less and less in magnitude of material as well
as brightness, until they are at last opaque, nonluminous bodies which
it becomes impossible to follow with the telescope.
CHAPTER XLI
WHERE DO COMETS COME FROM?
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