Man's Place in the Universe: A Study of the Results of Scientific Research in Relation to the Unity or Plurality of Worlds, 3rd EditionWallace, Alfred Russel
Science
Man's Place in the Universe: A Study of the Results of Scientific Research in Relation to the Unity or Plurality of Worlds, 3rd Edition
Wallace, Alfred Russel
Life; Plurality of worlds; Stars
Dr. Roberts tells us that all the spiral nebulæ he has photographed are
characterised by having a nucleus surrounded by dense nebulosity, most of
them being also studded with stars. These stars are always arranged more or
less symmetrically, following the curves of the spiral, while outside the
visible nebula are other stars arranged in curves strongly suggesting a
former greater extension of the nebulous matter. This is so marked a
feature that it at once leads to a possible explanation of the numerous
slightly curved lines of stars found in every part of the heavens, as being
the result of their origin from spiral nebulæ whose material substance has
been absorbed by them.
Dr. Roberts proposes several problems in relation to these bodies: Of what
materials are spiral nebulæ composed? Whence comes the vortical motion
which has produced their forms? The material he finds in those faint clouds
of nebulous matter, often of vast extent, that exist in many parts of the
sky, and these are so numerous that Sir William Herschel alone recorded the
positions of fifty-two such regions, many of which have been confirmed by
recent photographs. Dr. Roberts considers these to be either gaseous or
with discrete solid particles intermixed. He also enumerates smaller
nebulous masses undergoing condensation and segregation into more regular
forms; spiral nebulæ in various stages of condensation and of aggregation;
elliptic nebulæ; and globular nebulæ. In the last three classes there is
clear evidence, on every photograph that has been taken, that condensation
into stars or star like forms is now going on.
He adopts Sir Norman Lockyer's view that collisions of meteorites within
each swarm or cloud would produce luminous nebulosity; so also would
collisions between separate swarms of meteorites produce the conditions
required to account for the vortical motions and the peculiar distribution
of the nebulosity in the spiral nebulæ. Almost any collision between
unequal masses of diffused matter would, in the absence of any massive
central body round which they would be forced to revolve, lead to spiral
motions. It is to be noted that, although the stars formed in the spiral
convolutions of the nebulæ follow those curves, and retain them after the
nebulous matter has been all absorbed by them, yet, whenever such a nebula
is seen by us edgewise, the convolutions with their enclosed stars will
appear as straight lines; and thus not only numbers of star groups arranged
in curves, but also those which form almost perfect straight lines, may
possibly be traced back to an origin from spiral nebulæ.
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