Astronomy with an Opera-glass: A Popular Introduction to the Study of the Starry Heavens with the Simplest of Optical InstrumentsServiss, Garrett Putman
Science
Astronomy with an Opera-glass: A Popular Introduction to the Study of the Starry Heavens with the Simplest of Optical Instruments
Serviss, Garrett Putman
Astronomy
Next let us turn to Perseus. The bending row of stars marking the center
of this constellation is very striking and brilliant. The brightest star
in the constellation is Alpha, or Algenib, in the center of the row. The
head of Perseus is toward Cassiopeia, and in his left hand he grasps the
head of Medusa, which hangs down in such a way that its principal star
Beta, or Algol, forms a right angle with Algenib and Almaach in
Andromeda. This star Algol, or the Demon, as the Arabs call it, is in
some respects the most wonderful and interesting in all the heavens. It
is as famous for the variability of its light as Mira, but it differs
widely from that star both in its period, which is very short, and in
the extent of the changes it undergoes. During about two days and a
half, Algol is equal in brilliance to Algenib, which is a
second-magnitude star; then it begins to fade, and in the course of
about four and a half hours it sinks to the fourth magnitude, being then
about equal to the faint stars near it. It remains thus obscured for
only a few minutes, and then begins to brighten again, and in about four
and a half hours more resumes its former brilliance. This phenomenon is
very easily observed, for, as will be seen by consulting our little map,
Algol can be readily found, and its changes are so rapid that under
favorable circumstances it can be seen in the course of a single night
to run through the whole gamut. Of course, no optical instrument
whatever is needed to enable one to see these changes of Algol, for it
is plainly visible to the naked eye throughout, but it will be found
interesting to watch the star with an opera-glass. Its periodic time
from minimum to minimum is two days, twenty hours, and forty-nine
minutes, lacking a few seconds. Any one can calculate future minima for
himself by adding the periodic time above given to the time of any
observed minimum.
While spots upon its surface may be the cause of the variations in the
light of Mira, it is believed that the more rapid changes of Algol may
be due to another cause; namely, the existence of a huge, dark body
revolving swiftly around it at close quarters in an orbit whose plane is
directed edgewise toward the earth, so that at regular intervals this
dark body causes a partial eclipse of Algol. Notwithstanding the attacks
that have been made upon this theory, it seems to hold its ground, and
it will probably continue to find favor as a working hypothesis until
some fresh light is cast upon the problem. It hardly needs to be said
that the dark body in question, if it exists, must be of enormous size,
bearing no such insignificant proportion to the size of Algol as the
earth does to the sun, but being rather the rival in bulk of its shining
brother--a blind companion, an extinguished sun.
Public-domain text, read in full here on John Shaqi.
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