[Illustration: _A 14,000-year-old burial site being uncovered in the
area of the Aswan Reservoir in Sudan. To determine the age of such
ancient remains, archaeologists search for every scrap of associated
wood or charcoal that could be used for age measurement of carbon-14,
one of the “nuclear clocks” described in this booklet._]
[Illustration: NUCLEAR CLOCKS]
By HENRY FAUL
INTRODUCTION
_How old is a rock?_
_How old is man?_
_How old is the earth?_
It would be difficult to find a reason why anyone would really have to
know the answers to these questions, yet they have been asked over and
over again since the dawn of human society. The records of every
civilization disclose attempts to delve into the past beyond the memory
of the oldest man, beyond recorded history, beyond earliest legend.
Curiosity about the remote past may be very ancient, but the only
reliable method of measuring very long intervals of time is new. The
possibility of doing so became apparent only after the discovery of
RADIOACTIVITY[1] in 1896 by Henri Becquerel, when Marie and Pierre Curie
in 1898 recognized that some atoms are radioactive and change by
themselves into other atoms at regular and constant rates. If something
gradually transforms itself into something else, if this transformation
goes on at a known pace, and if all the products of the activity are
preserved in some kind of a CLOSED SYSTEM, then it is theoretically
possible to calculate the time that has elapsed since the process
started. The theory was clear for years; the only problem was how to
satisfy all those ifs.
By 1910 it was well established that the earth must be extremely
ancient. Analyses of some minerals containing uranium showed them to be
hundreds of millions of years old, even though the uranium came from
rocks that were known to be relatively young among geologic STRATA.
Measurements still were inaccurate, however, and only a few rare and
unusually rich radioactive minerals contained enough of the products of
RADIOACTIVE DECAY[2] to allow analysis of their age by the crude methods
then available.
Not much progress was made for about 30 years until A. O. C. Nier, a
Harvard University physicist, perfected an instrument called a MASS
SPECTROMETER (to be described later) just before World War II. The rapid
technological advances of the war years followed. The Manhattan
Project[3] made the atomic bombs that ended the fighting; it also
developed new scientific techniques that could be applied, when peace
returned, to the measurement of geologic time.
Public-domain text, read in full here on John Shaqi.
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