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
For a number of years prior to Herschel's great discovery, it had been
noticed that the distances at which the then known planets circulated
appeared to be arranged in a somewhat orderly progression outwards from
the sun. This seeming plan, known to astronomers by the name of Bode's
Law, was closely confirmed by the distance of the new planet Uranus.
There still lay, however, a broad gap between the planets Mars and
Jupiter. Had another planet indeed circuited there, the solar system
would have presented an appearance of almost perfect order. But the void
between Mars and Jupiter was unfilled; the space in which one would
reasonably expect to find another planet circling was unaccountably
empty.
On the first day of the nineteenth century the mystery was however
explained, a body being discovered[1] which revolved in the space that
had hitherto been considered planetless. But it was a tiny globe hardly
worthy of the name of planet. In the following year a second body was
discovered revolving in the same space; but it was even smaller in size
than the first. During the ensuing five years two more of these little
planets were discovered. Then came a pause, no more such bodies being
added to the system until half-way through the century, when suddenly
the discovery of these so-called "minor planets" began anew. Since then
additions to this portion of our system have rained thick and fast. The
small bodies have received the name of Asteroids or Planetoids; and up
to the present time some six hundred of them are known to exist, all
revolving in the previously unfilled space between Mars and Jupiter.
In the year 1846 the outer boundary of the solar system was again
extended by the discovery that a great planet circulated beyond Uranus.
The new body, which received the name of Neptune, was brought to light
as the result of calculations made at the same time, though quite
independently, by the Cambridge mathematician Adams, and the French
astronomer Le Verrier. The discovery of Neptune differed, however, from
that of Uranus in the following respect. Uranus was found merely in the
course of ordinary telescopic survey of the heavens. The position of
Neptune, on the other hand, was predicted as the result of rigorous
mathematical investigations undertaken with the object of fixing the
position of an unseen and still more distant body, the attraction of
which, in passing by, was disturbing the position of Uranus in its
revolution around the sun. Adams actually completed his investigation
first; but a delay at Cambridge in examining that portion of the sky,
where he announced that the body ought just then to be, allowed France
to snatch the honour of discovery, and the new planet was found by the
observer Galle at Berlin, very near the place in the heavens which Le
Verrier had mathematically predicted for it.
Public-domain text, read in full here on John Shaqi.
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