With the naked eye you can see the Andromeda nebula as a faint patch of
light. When you look at it you are looking back 900,000 years into the
past.
_The Contraction Hypothesis_
The problem of providing sufficient supplies of energy to maintain the
sun’s output of light and heat has often been debated by astronomers
and others. In the last century it was shown by Helmholtz and
Kelvin that the sun could maintain its heat for a very long time by
continually shrinking. Contraction involves an approach or fall of
the matter towards the centre; gravitational potential energy is thus
converted and made available as heat. It was assumed that this was
the sole resource since no other supply capable of yielding anything
like so large an amount was known. But the supply is not unlimited,
and on this hypothesis the birth of the sun must be dated not more
than 20,000,000 years ago. Even at the time of which I am speaking the
time-limit was found to be cramping; but Kelvin assured the geologists
and biologists that they must confine their outlines of terrestrial
history within this period.
About the beginning of the present century the contraction theory was
in the curious position of being generally accepted and generally
ignored. Whilst few ventured to dispute the hypothesis, no one seems to
have had any hesitation, if it suited him, in carrying back the history
of the earth or moon to a time long before the supposed era of the
formation of the solar system. Lord Kelvin’s date of the creation was
treated with no more respect than Archbishop Ussher’s.
The serious consequences of the hypothesis become particularly
prominent when we consider the diffuse stars of high luminosity; these
are prodigal of their energy and squander it a hundred or a thousand
times faster than the sun. The economical sun could have subsisted
on its contraction energy for 20,000,000 years, but for the high
luminosity stars the limit is cut down to 100,000 years. This includes
most of the naked-eye stars. Dare we believe that they were formed
within the last 100,000 years? Is the antiquity of man greater than
that of the stars now shining? Do stars in the Andromeda nebula run
their course in less time than their light takes to reach us?
Public-domain text, read in full here on John Shaqi.
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