The cycle of erosion now in progress and recorded in the layers of
stratified rock being spread beneath the sea in continental deltas
has therefore been preceded by many similar cycles. Again and
again movements of the crust have brought to an end one cycle--
sometimes when only well under way, and sometimes when drawing
toward its close--and have begun another. Again and again they
have added to the land areas which before were sea, with all their
deposition records of earlier cycles, or have lowered areas of
land beneath the sea to receive new sediments.
THE AGE OF THE EARTH. The thickness of the stratified rocks now
exposed upon the eroded surface of the continents is very great.
In the Appalachian region the strata are seven or eight miles
thick, and still greater thicknesses have been measured in several
other mountain ranges. The aggregate thickness of all the
formations of the stratified rocks of the earth's crust, giving to
each formation its maximum thickness wherever found, amounts to
not less than forty miles. Knowing how slowly sediments accumulate
upon the sea floor, we must believe that the successive cycles
which the earth has seen stretch back into a past almost
inconceivably remote, and measure tens of millions and perhaps
even hundreds of millions of years.
HOW THE FORMATIONS ARE CORRELATED AND THE GEOLOGICAL RECORD MADE
UP. Arranged in the order of their succession, the formations of
the earth's crust would constitute a connected record in which the
geological history of the planet may be read, and therefore known
as the GEOLOGICAL RECORD. But to arrange the formations in their
natural order is not an easy task. A complete set of the volumes
of the record is to be found in no single region. Their leaves and
chapters are scattered over the land surface of the globe. In one
area certain chapters may be found, though perhaps with many
missing leaves, and with intervening chapters wanting, and these
absent parts perhaps can be supplied only after long search
through many other regions.
Adjacent strata in any region are arranged according to the LAW OF
SUPERPOSITION, i.e. any stratum is younger than that on which it
was deposited, just as in a pile of paper, any sheet was laid
later than that on which it rests. Where rocks have been
disturbed, their original attitude must be determined before the
law can be applied. Nor can the law of superposition be used in
identifying and comparing the strata of different regions where
the formations cannot be traced continuously from one region to
the other.
The formations of different regions are arranged in their true
order by the LAW OF INCLUDED ORGANISMS; i.e. formations, however
widely separated, which contain a similar assemblage of fossils
are equivalent and belong to the same division of geological time.
Public-domain text, read in full here on John Shaqi.
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