The Story of the HeavensBall, Robert S. (Robert Stawell)
History
The Story of the Heavens
Ball, Robert S. (Robert Stawell)
Astronomy
A level part of the earth's surface having been chosen, a line a few
miles long is measured. This is called the base, and as all the
subsequent measures depend ultimately on the base, it is necessary that
this measurement shall be made with scrupulous accuracy. To measure a
line four or five miles long with such precision as to exclude any
errors greater than a few inches demands the most minute precautions. We
do not now enter upon a description of the operations that are
necessary. It is a most laborious piece of work, and many ponderous
volumes have been devoted to the discussion of the results. But when a
few base lines have been obtained in different places on the earth's
surface, the measuring rods are to be laid aside, and the subsequent
task of the survey of the earth is to be conducted by the measurement of
angles from one station to another and trigonometrical calculations
based thereon. Starting from a base line a few miles long, distances of
greater length are calculated, until at length stretches 100 miles long,
or even more, can be accomplished. It is thus possible to find the
length of a long line running due north and south.
So far the work has been merely that of the terrestrial surveyor. The
distance thus ascertained is handed over to the astronomer to deduce
from it the dimensions of the earth. The astronomer fixes his
observatory at the northern end of the long line, and proceeds to
determine his latitude by observation. There are various ways by which
this can be accomplished. They will be found fully described in works on
practical astronomy. We shall here only indicate in a very brief manner
the principle on which such observations are to be made.
Everyone ought to be familiar with the Pole Star, which, though by no
means the most brilliant, is probably the most important star in the
whole heavens. In these latitudes we are accustomed to find the Pole
Star at a considerable elevation, and there we can invariably find it,
always in the same place in the northern sky. But suppose we start on a
voyage to the southern hemisphere: as we approach the equator we find,
night after night, the Pole Star coming closer to the horizon. At the
equator it is on the horizon; while if we cross the line, we find on
entering the southern hemisphere that this useful celestial body has
become invisible. This is in itself sufficient to show us that the earth
cannot be the flat surface that untutored experience seems to indicate.
Public-domain text, read in full here on John Shaqi.
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