The distance of the moon from the earth is just now the subject of
re-measurement. The base line is from Greenwich to Cape of Good Hope,
and the new feature introduced is the selection of a definite point on
a crater (Mösting A), instead of the moon’s edge, as the point whose
distance is to be measured.
_The Inferior Planets_.—When the telescope was invented, the phases of
Venus attracted much attention; but the brightness of this planet, and
her proximity to the sun, as with Mercury also, seemed to be a bar to
the discovery of markings by which the axis and period of rotation
could be fixed. Cassini gave the rotation as twenty-three hours, by
observing a bright spot on her surface. Shröter made it 23h. 21m. 19s.
This value was supported by others. In 1890 Schiaparelli[2] announced
that Venus rotates, like our moon, once in one of her revolutions, and
always directs the same face to the sun. This property has also been
ascribed to Mercury; but in neither case has the evidence been
generally accepted. Twenty-four hours is probably about the period of
rotation for each of these planets.
Several observers have claimed to have seen a planet within the orbit
of Mercury, either in transit over the sun’s surface or during an
eclipse. It has even been named _Vulcan_. These announcements would
have received little attention but for the fact that the motion of
Mercury has irregularities which have not been accounted for by known
planets; and Le Verrier[3] has stated that an intra-Mercurial planet or
ring of asteroids would account for the unexplained part of the motion
of the line of apses of Mercury’s orbit amounting to 38” per century.
_Mars_.—The first study of the appearance of Mars by Miraldi led him to
believe that there were changes proceeding in the two white caps which
are seen at the planet’s poles. W. Herschel attributed these caps to
ice and snow, and the dates of his observations indicated a melting of
these ice-caps in the Martian summer.
Schroter attributed the other markings on Mars to drifting clouds. But
Beer and Mädler, in 1830-39, identified the same dark spots as being
always in the same place, though sometimes blurred by mist in the local
winter. A spot sketched by Huyghens in 1672, one frequently seen by W.
Herschel in 1783, another by Arago in 1813, and nearly all the markings
recorded by Beer and Mädler in 1830, were seen and drawn by F. Kaiser
in Leyden during seventeen nights of the opposition of 1862 (_Ast.
Nacht._, No. 1,468), whence he deduced the period of rotation to be
24h. 37m. 22s.,62—or one-tenth of a second less than the period deduced
by R. A. Proctor from a drawing by Hooke in 1666.
It must be noted that, if the periods of rotation both of Mercury and
Venus be about twenty-four hours, as seems probable, all the four
planets nearest to the sun rotate in the same period, while the great
planets rotate in about ten hours (Uranus and Neptune being still
indeterminate).
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account