Pleasant Ways in ScienceProctor, Richard A. (Richard Anthony)
Science
Pleasant Ways in Science
Proctor, Richard A. (Richard Anthony)
Science
The other method depends, not on displacement of two observers north
and south, or difference of latitude, but on displacement east and
west. Moreover, it does not require that there shall be two observers
at stations far apart, but uses the observations made at one and the
same stations at different times. The earth, by turning on her axis,
carries the observer from the west to the east of an imaginary line
joining the earth’s centre and the centre of Mars. When on the west
of that line, or in the early evening, he sees Mars displaced towards
the east of the planet’s true position. After nine or ten hours the
observer is carried as far to the east of that line, and sees Mars
displaced towards the west of his true position. Of course Mars has
moved in the interval. He is, in fact, in the midst of his retrograde
career. But the astronomer knows perfectly well how to take that
motion into account. Thus, by observing the two displacements, or the
total displacement of Mars from east to west on account of the earth’s
rotation, one and the same observer can, in the course of a single
favourable night, determine the sun’s distance. And in passing, it may
be remarked that this is the only general method of which so much can
be said. By some of the others an astronomer can, indeed, estimate the
sun’s distance without leaving his observatory—at least, theoretically
he can do so. But many years of observation would be required before he
would have materials for achieving this result. On the other hand, one
good pair of observations of Mars, in the evening and in the morning,
from a station near the equator, would give a very fair measure of
the sun’s distance. The reason why the station should be near the
equator will be manifest, if we consider that at the poles there
would be no displacement due to rotation; at the equator the observer
would be carried round a circle some twenty-five thousand miles in
circumference; and the nearer his place to the equator the larger
the circle in which he would be carried, and (_cæteris paribus_) the
greater the evening and morning displacement of the planet.
Both these methods have been successfully applied to the problem of
determining the sun’s distance, and both have recently been applied
afresh under circumstances affording exceptionally good prospects of
success, though as yet the results are not known.
Public-domain text, read in full here on John Shaqi.
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