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
The extraordinary size and brilliancy of Sirius might naturally enough
lead one to suppose that it is the nearest of the stars, and such it was
once believed to be. Observations of stellar parallax, however, show
that this was a mistake. The distance of Sirius is so great that no
satisfactory determination of it has yet been made. We may safely say,
though, that that distance is, at the least calculation,
50,000,000,000,000 miles. In other words, Sirius is about 537,000 times
as far from the earth as the sun is. Then, since light diminishes as
the square of the distance increases, the sun, if placed as far from us
as Sirius is, would send us, in round numbers, 288,000,000,000 times
less light than we now receive from it. But Sirius actually sends us
only about 4,000,000,000 times less light than the sun does;
consequently Sirius must shine 288,000,000,000/4,000,000,000 = 72
times as brilliantly as the sun. If we adopt Wollaston's estimate
of the light of Sirius, as compared with that of the sun, viz.,
1/20,000,000,000, we shall still find that the actual brilliancy of
that grand star is more than fourteen times as great as that of our sun.
But as observations on the companion of Sirius show that Sirius's mass
is fully twenty times the sun's, and since the character of Sirius's
spectrum indicates that its intrinsic brightness, surface for surface,
is much superior to the sun's, it is probable that our estimate of the
star's actual brilliancy, as compared with what the sun would possess at
the same distance, viz., seventy-two times, is much nearer the truth. It
is evident that life would be insupportable upon the earth if it were
placed as near to Sirius as it is to the sun. If the earth were a planet
belonging to the system of Sirius, in order to enjoy the same amount of
heat and light it now receives, it would have to be removed to a
distance of nearly 800,000,000 miles, or eight and a half times its
distance from the sun. Its time of revolution around Sirius would then
be nearly five and a half years, or, in other words, the year would be
lengthened five and a half times.
Public-domain text, read in full here on John Shaqi.
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