Rough Ways Made Smooth: A series of familiar essays on scientific subjectsProctor, Richard A. (Richard Anthony)
Science
Rough Ways Made Smooth: A series of familiar essays on scientific subjects
Proctor, Richard A. (Richard Anthony)
Science
Now it is clear that the results accruing during the two stages into
which we thus divide the cooling of the lunar globe would be markedly
different. During the first stage forces of tension (tangential) would
be called to play in the lunar crust; during the later stage the forces
would be those of pressure.
Taking the earlier stage, during which the forces would be tensional,
let us consider in what way these forces would operate.
At the beginning, when the crust would be comparatively thin, I
conceive that the more general result of the rapid contraction of
the crust would be the division of the crust into segments, by the
formation of numerous fissures due to the lateral contraction of
the thin crust. The molten matter in these fissures would film over
rapidly, however, and all the time the crust would be growing thicker
and thicker, until at length the formation of distinct segments would
no longer be possible. The thickening crust, plastic in its lower
strata, would now resist more effectively the tangential tensions,
and when yielding would yield in a different manner. It was at this
stage, in all probability, that processes such as those illustrated by
Nasmyth's globe experiments took place, and that from time to time the
crust yielded at particular points, which became the centres of systems
of radiating fissures. Before proceeding, however, to consider the
results of such processes, let it be noted that we have seen reason to
believe that among the very earliest lunar formations would be rifts
breaking the _ancient_ surface of the lunar crust. I distinguish in
this way the ancient surface from portions of surface whereof I shall
presently have to speak as formed at a later time.
Public-domain text, read in full here on John Shaqi.
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