The Story of the HeavensBall, Robert S. (Robert Stawell)
History
The Story of the Heavens
Ball, Robert S. (Robert Stawell)
Astronomy
It may, however, be asked how we learn this. Is not air transparent, and
how, therefore, could our telescopes be expected to show whether the
moon really possessed such an envelope? It is by indirect, but
thoroughly reliable, methods of observation that we learn the destitute
condition of our satellite. There are various arguments to be adduced;
but the most conclusive is that obtained on the occurrence of what is
called an "occultation." It sometimes happens that the moon comes
directly between the earth and a star, and the temporary extinction of
the latter is an "occultation." We can observe the moment when the
phenomenon takes place, and the suddenness of the disappearance of the
star is generally remarked. If the moon were enveloped in a copious
atmosphere, the interposition of this gaseous mass by the movement of
the moon would produce a gradual evanescence of the star wholly wanting
the abruptness which marks the obscuration.[9]
Let us consider how we can account for the absence of an atmosphere from
the moon. What we call a gas has been found by modern research to be a
collection of an immense number of molecules, each of which is in
exceedingly rapid motion. This motion is only pursued for a short
distance in one direction before a molecule comes into collision with
some other molecule, whereby the directions and velocities of the
individual molecules are continually changed. There is a certain average
speed for each gas which is peculiar to the molecules of that gas at a
certain temperature. When several gases are mixed, as oxygen and
nitrogen are in our atmosphere, the molecules of each gas continue to
move with their own characteristic velocities. So far as we can estimate
the temperature at the boundary of the earth's atmosphere, we may assume
that the average of the velocities of the oxygen molecules there found
is about a quarter of a mile per second. The velocities for nitrogen are
much the same, while the average speed of a molecule of hydrogen is
about one mile per second, being, in fact, by far the greatest molecular
velocity possessed by any gas.
[Illustration: PLATE IX.
PLATO.
(AFTER NASMYTH.)]
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