Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
On the electro-magnetic side, including also the motion of light, a
total eclipse of the sun affords an especially favorable occasion for
applying the critical test, whether a huge mass like the sun would or
would not deflect toward itself the rays of light from stars passing
close to the edge of its disk, or limb. A total eclipse of exceptional
duration occurred on May 29, 1919, and the two eclipse parties sent out
by the Royal Society of London and the Royal Astronomical Society were
equipped especially with apparatus for making this test. Their stations
were one on the east coast of Brazil and the other on the west coast of
Africa.
Accurate calculation beforehand showed just where the sun would be among
the stars at the time of the eclipse; so that star plates of this region
were taken in England before the expeditions went out. Then, during the
total eclipse, the same regions were photographed with the eclipsed sun
and the corona projected against them. To make doubly sure, the stars
were a third time photographed some weeks after the eclipse, when the
sun had moved away from that particular region.
Measuring up the three sets of plates, it was found that an appreciable
deflection of the light of the stars nearest alongside the sun actually
exists; and the amount of it is such as to afford a fair though not
absolutely exact verification of the theory. The observed deflection
may of course be due to other causes, but the English astronomers
generally regard the near verification as a triumph for the Einstein
theory. Astronomers are already beginning preparations for a repetition
of the eclipse programme with all possible refinement of observation,
when the next total eclipse of the sun occurs, September 20, 1922,
visible in Australia and the islands of the Indian Ocean.
A third test of the theory is perhaps more critical than either of the
others, and this necessitates a displacement of spectral lines in a
gravitational field toward the red end of the spectrum; but the experts
who have so far made measures for detecting such displacement disagree
as to its actual existence. The work of St. John at Mt. Wilson is
unfavorable to the theory, as is that of Evershed of Kodiakanal, who has
made repeated tests on the spectrum of Venus, as well as in the cyanogen
bands of the sun.
The enthusiastic advocates of the Einstein theory hold that, as Newton
proved the three laws of Kepler to be special cases of his general law,
so the "universal relativity theory" will enable eventually the
Newtonian law to be deduced from the Einstein theory. "This is the way
we go on in science, as in everything else," wrote Sir George Airy,
Astronomer Royal; "we have to make out that something is true; then we
find out under certain circumstances that it is not quite true; and then
we have to consider and find out how the departure can be explained."
Meanwhile, the prudent person keeps the open mind.
CHAPTER XVI
HALLEY AND HIS COMET
Public-domain text, read in full here on John Shaqi.
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