It was for a long time a prevalent belief that the interior of the globe
is a molten mass round which an outer shell has gradually formed through
cooling. Hence the term "crust" was applied to this external solid
envelope, which was variously computed to be 10, 20, or more miles in
thickness. The portion of this crust accessible to human observation was
seen to afford abundant evidence of vast plications and corrugations of
its substance, which were regarded as only explicable on the supposition
of a thin solid collapsible shell floating on a denser liquid interior.
When, however, physical arguments were adduced to show the great
rigidity of the earth as a whole, the idea of a thin crust enclosing a
molten nucleus was reluctantly abandoned by geologists, who found the
problem of the earth's interior to be incapable of solution by any
evidence which their science could produce. They continued, however, to
use the term "crust" as a convenient word to denote the cool outer layer
of the earth's mass, the structure and history of which form the main
subjects of geological investigation. More recently, however, various
lines of research have concurred in suggesting that, whatever may be the
condition of the interior, its substance must differ greatly from that
of the outer shell, and that there may be more reason than appeared for
the retention of the name of crust. Observations on earthquake motion by
Dr John Milne and others, show that the rate and character of the waves
transmitted through the interior of the earth differ in a marked degree
from those propagated along the crust. This difference indicates that
rocky material, such as we know at the surface, may extend inwards for
some 30 m., below which the earth's interior rapidly becomes fairly
homogeneous and possesses a high rigidity. From measurements of the
force of gravity in India by Colonel S.G. Burrard, it has been inferred
that the variations in density of the outer parts of the earth do not
descend farther than 30 or 40 m., which might be assumed to be the limit
of the thickness of the crust. Recent researches in regard to the
radio-active substances present in rocks suggest that the crust is not
more than 50 m. thick, and that the interior differs from it in
possessing little or no radio-active material.
The interior.
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