The Source and Mode of Solar Energy Throughout the UniverseHeysinger, Isaac W. (Isaac Winter)
Science
The Source and Mode of Solar Energy Throughout the Universe
Heysinger, Isaac W. (Isaac Winter)
Bible and science; Cosmogony; Solar system
If the sun's equator were coincident with the plane of the planetary
orbits, it is obvious that all the planetary energies would be
directed, whatever the position of the planets around the sun,
immediately upon this equatorial great circle, and that, at each
revolution upon his axis, corresponding nearly to our calendar month,
the same part of his sphere would be exposed to these direct currents,
so that the intensity would be, in its aggregate, nearly a constant
quantity. But, by reason of the sun's axial inclination of seven
degrees to the plane of the planetary orbits, a far more complex and
important condition of affairs ensues. It will be seen at once that
the plane of the planetary orbits intersects the sun's equator at
opposite sides, and that, from a minimum of nothing, this line reaches
a maximum, twice in each circumference, of seven degrees, one north
and the other south of the equator, and that this arc of fourteen
degrees, thus traversed by every planet in its orbital rotation
around the sun, measures more than one hundred thousand miles from
north to south upon the solar surface, nearly one-half the distance
which separates the earth from the moon. If all the planets were in
conjunction or nearly so, on one side of the sun, for example, and in
the vertical plane of the sun's axis, they would continue to deliver
their electrical currents with their greatest intensity upon a single
point of his surface fifty-two thousand miles north of his equator,
while the opposite point, one hundred and four thousand miles distant,
would be unaffected by any direct currents at all. Conversely, if
in conjunction on the opposite side of the sun, they would continue
to deliver these currents upon a corresponding point fifty-two
thousand miles south of the equator; but if in conjunction in the
vertical plane transverse to the sun's axial inclination, these
currents on either side of the sun would be delivered directly upon
the solar equator. The importance of this will be understood when
it is considered that for many of our years such planets as Jupiter
and Saturn must continue to direct their currents upon a very slowly
changing point of the sun's surface, by reason of their vast annual
rotational period, while with the earth and the interior planets these
various points are struck with ever-increasing rapidity as the year
decreases in length with the different planets, the earth, Venus,
and Mercury. There is a solar equinoctial, so to speak, just as there
is a terrestrial equinoctial in which the sun crosses the line twice
each year, and the meteorological disturbances faintly shown on the
earth at such times are vastly increased on the sun, and rendered
far more complex by the interaction of many planets upon the sun,
instead of a single sun upon each planet. While our equinoctial has
to do with gravity and light and heat, and probably magnetism, the
solar equinoctial deals with the vast electrical streams which feed
Public-domain text, read in full here on John Shaqi.
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