Worlds in the making: The evolution of the universeArrhenius, Svante
Science
Worlds in the making: The evolution of the universe
Arrhenius, Svante
Cosmogony
We have so far dwelt on the effects which the particles expelled
from the sun and the stars exert on distant celestial bodies. It may
be asked whether this dust does not act upon our own earth. We have
already recognized the peculiar luminescence which on clear nights is
diffused over the sky as a consequence of electrical discharges of this
straying dust. This leads to the question whether the magnificent polar
lights, which according to modern views are also caused by electric
discharges in the higher strata of the atmosphere, are not produced
by dust which the sun sends to us. It will, indeed, be seen that we
can in this way explain quite a number of the peculiarities of these
mysterious phenomena which have always excited man’s imagination.
We know that meteorites and shooting-stars are rendered incandescent
by the resistance which they encounter in the air at an average height
of 120 km. (75 miles), sometimes of 150 and 200 km. In isolated cases
meteorites are supposed to have become visible even at still greater
altitudes. It would result that there must be appreciable quantities of
air still at relatively high elevation, and that the atmosphere cannot
be imperceptible at an altitude of less than 100 km., as was formerly
assumed. Bodies smaller than the meteorites as well as the solar dust
we have spoken of—which, owing to their minuteness and to the strong
cooling by heat radiation and conduction that they undergo in passing
through the atmosphere, could never attain incandescence—would be
stopped at greater heights. We will assume that they are arrested at a
mean height of about 400 km. (250 miles).
The masses of dust which are expelled by the sun are partly uncharged,
partly charged with positive or negative electricity. Only the latter
can be connected with the polar lights; the former would remain dark
and slowly sink through our atmosphere to the surface of the earth.
They form the so-called cosmical dust, of whose great importance
Nordenskiöld was so firmly convinced. He estimated that the yearly
increase in the weight of the earth by the addition of the meteorites
was at least ten million tons, or five hundred times more than we
stated above (page 108). Like Lockyer and, in more recent days,
Chamberlin, he believed that the planets were largely built up of
meteorites.
The dust reaching the earth from the sun would not, were it not
electrically charged, amount to more than 200 tons in a year. Although
this figure may be far too low, yet the supply of matter by these means
is certainly very small in comparison with the 20,000 tons which the
earth receives in the shape of meteorites and shooting-stars. But owing
to its extremely minute distribution, the effect of this dust is very
important, and it may constitute a much greater portion of the finely
distributed cosmical dust in the highest strata of the atmosphere than
the dust introduced by falling meteorites and shooting-stars.
Public-domain text, read in full here on John Shaqi.
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