Fossils: A Story of the Rocks and Their Record of Prehistoric LifeMarkman, Harvey C.
Science
Fossils: A Story of the Rocks and Their Record of Prehistoric Life
Markman, Harvey C.
Fossils; Paleontology
However, there are certain other factors which complicate the problem.
For instance, it is known that land areas exposed to surface drainage
have not always been of their present size, and the annual production of
salt by the different types of rocks exposed at various times in the
history of the earth has not always been as it is now. The rocks also
must be older than the oceans, but how much older cannot be determined
by means of figures obtained in this way.
Until the beginning of this century there was little anticipation of a
better measuring stick than one in use at the time which placed its
reliance on the total thickness of the sedimentary deposits and the
length of time required to produce this great accumulation of material
which is known as the geological column. Since the total thickness, or
height of the column, was not accurately known, and with recognized time
gaps to bridge, there was little hope of working out a complete
chronology by this device, but it has supplied highly desirable and
reliable information concerning parts of the record.
The system has been somewhat improved since its earliest use, and one of
its latest applications gives us an age, for known sedimentary rocks, of
nearly half a billion years, this being based on a total thickness of
one hundred miles and an average rate of 880 years for the building up
of one foot of sediments. Its greatest weakness is due to the absence of
a reliable factor to take care of long stretches of time in which the
sedimentary rocks are known to have been subjected to destructive
processes. A yardstick of this character cannot be applied to rocks that
have been destroyed, and there are excellent reasons for believing that
these interruptions may account for several times the lapse of years
indicated by the amount of rock remaining in the column which has been
pieced together.
Following the discovery of radium, however, the present century provided
a new field of knowledge which has contributed greatly to the
measurement of geologic time. The penetrating rays produced by radium
and other radioactive substances are due to extremely slow but violent
disintegration of the material. Uranium and thorium are radioactive
elements which occur in the rocks of many parts of the world. There is
little or no loss of material as the so-called disintegration proceeds;
instead there is a complicated series of transformations in which other
elements are produced, radium itself being one of these. Helium and lead
eventually take the place of the less stable elements and the known rate
at which these products accumulate provides the highly desired key to
the age of the rocks.
Public-domain text, read in full here on John Shaqi.
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