Worlds in the making: The evolution of the universeArrhenius, Svante
Science
Worlds in the making: The evolution of the universe
Arrhenius, Svante
Cosmogony
About the bodies which have drifted into nebulæ, and about the remnants
of new stars which lie inside the nebulæ, the gases will thus collect
which had formerly been scattered through the outer portions of the
nebula. These gases originate from the explosive compounds which had
been stored in the interior of the new stars. Hydrogen and helium
are, most likely, the most important of these; for they are the most
difficult to be condensed, and can exist in notable quantities at
extremely low temperatures, such as must prevail in the outermost
portions of the nebulæ, in which gases of other substances would be
liquefied. Even if the nebulæ had an absolute temperature of 50° (-223°
C.), the vapor of the most volatile of all the metals, mercury, would
even in the saturated state be present in such a small quantity that
a single gramme would occupy the space of a cube whose side would
correspond to about two thousand light-years—that is to say, to 450
times the distance of the earth from the nearest fixed star. One gramme
of sodium, likewise a very volatile metal, and of a comparatively high
importance in the constitution of the fixed stars, would fill the side
of a cube that would be a thousand million times as large. Still more
inconceivable numbers result for magnesium and iron, which are very
frequent constituents of fixed stars, and which are less volatile than
the just-mentioned metals. We thus recognize the strongly selective
action of the low temperatures upon all the substances which are less
difficult to condense than helium and hydrogen. As we now know that
there is another substance in the nebulæ, which has been designated
nebulium, and which is characterized by two spectral lines not found in
any terrestrial substance, we must conclude that this otherwise unknown
element nebulium must be almost as difficult to condense as hydrogen
and helium. Its boiling-point will probably lie below 50° absolute,
like that of those gases.
That hydrogen and helium, together with nebulium, alone seem to occur
in the vastly extended nebulæ is probably to be ascribed to their
low boiling-points. We need not look for any other explanation. The
supposition of Lockyer that all the other elements would be transformed
into hydrogen and helium at extreme rarefaction is quite unsupported.
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