Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
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Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
Once this fundamental unit is established, we have a firm basis on which
to build up our knowledge of the distances, the sizes and motions of the
heavenly bodies, especially those that comprise the solar system. We can
at once ascertain the size of the sun, which we do by measuring the
angle which it fills, that is, the sun's apparent diameter. Finding this
to be something over a half a degree in arc, the processes of elementary
trigonometry tell us that the sun's globe is 865,000 miles in diameter.
For nearly a century this has been accurately measured with the greatest
care, and diameters taken in every direction are found to be equal and
invariably the same. So we conclude that the sun is a perfect sphere,
and so far as our instruments can inform us, its actual diameter is not
subject to appreciable change.
The vastness of the sun's volume commands our attention. As his diameter
is 110 times that of the earth, his mere size or volume is 110×110×110
or 1,300 thousand times that of the earth, because the volumes of
spheres are in proportion as the cubes of their diameters. If the
materials that compose the sun were as heavy as those that make up the
earth, it would take 1,300 thousand earths to weigh as much as the sun
does. But by a method which we need not detail here, the sun's actual
weight or mass is found to be only 300 thousand (more nearly 330,000),
times greater than the earth's. So we must infer that, bulk for bulk,
the component materials of the sun are about one-fourth lighter than
those of the earth, that is, about one and one-half times as dense as
water.
To look at this in another way: it is known that a body falling freely
toward the earth from outer space would acquire a speed of seven miles a
second, whereas if it were to fall toward the sun instead, the velocity
would be 383 miles a second on reaching his surface. If all the other
bodies of the solar system, that is, the earth and moon, all the planets
and their satellites, the comets and all were to be fused together in a
single globe, it would weigh only one-seven hundred and fiftieth as much
as the sun does.
At the surface, however, the disproportion of gravity is not so great,
because of the sun's vast size: it is only about twenty-eight times
greater on the sun than on the earth; and instead of a body falling 16
feet the first second as here, it would fall 444 feet there. Pendulums
of clocks on the sun would swing five times for every tick here, and an
athlete's running high jump would be scaled down to three inches.
Public-domain text, read in full here on John Shaqi.
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