Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
How completely dependent mankind is upon the sun and its powerful
radiations, only the science of the present day can tell us. By means of
the sun's heat the forests of early geologic ages were enabled to wrest
carbon from the atmosphere and store it in forms later converted by
nature's chemistry into peat and coal. Through processes but imperfectly
understood, the varying forms of vegetable life are empowered to
conserve, from air and soil, nitrogen and other substances suitable for
and essential to the life maintenance of animal creatures. Breezes that
bring rain and purify the air; the energy of water held under storage in
stream and dam and fall; trade winds facilitating commerce between the
continents; oceanic currents modifying coastal climates; the violence of
tornado, typhoon and water-spout, together with other manifestations of
natural forces--all can be traced back to their origin in the tremendous
heating power of the solar rays. In everything material the sun is our
constant and bountiful benefactor. If his light and heat were withdrawn,
practically every form of human activity on this planet would come to an
early end.
How far away is the sun? What is the size of the sun? These are
questions that astronomers of the present day can answer with accuracy.
So closely do they know the sun's distance that it is employed as their
yardstick of the sky, or unit of celestial measurement. Many methods
have been utilized in ascertaining the distance of the sun, and the
remarkable agreement among them all is very extraordinary. Some of them
depend upon pure geometry, and the basic measure which we make from the
earth is not the distance of the sun directly; but we find out how far
away Venus is during a transit of Venus, for example, or how far away
Mars is or some of the asteroids are at their closer oppositions. Then
it is possible to calculate how far away the sun is, because one
measurement of distance in the solar system affords us the scale on
which the whole structure is built. But perhaps the simplest method of
getting the sun's distance is by the velocity of light, 186,300 miles a
second. From eclipses of Jupiter's moons we know that light takes 8
minutes 20 seconds to pass from sun to earth. So that the sun's distance
is the simple product of the two, or 93 millions of miles.
Public-domain text, read in full here on John Shaqi.
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