Rough Ways Made Smooth: A series of familiar essays on scientific subjectsProctor, Richard A. (Richard Anthony)
Science
Rough Ways Made Smooth: A series of familiar essays on scientific subjects
Proctor, Richard A. (Richard Anthony)
Science
Leverrier pointed out that a planet half the size of Mercury between
Mercury and the sun would account for the discrepancy between
observation and theory. But a planet of that size would be a very
conspicuous object at certain times, even when the sun was not
eclipsed; and when favourably placed during eclipses would be a
resplendent orb which would attract the notice of even the most
careless observer. For we must remember that the brightness of a
planet depends in part on its size and its distance from the earth,
and in part on its distance from the sun. A planet half as large as
Mercury would have a diameter about four-fifths of Mercury's, and at
equal distance would present a disc about two-thirds of Mercury's in
apparent size. But supposing the planet to be half as far from the sun
as Mercury (and theory required that the planet should be rather nearer
the sun), its surface would be illuminated four times as brightly as
that of Mercury. Hence, with a disc two-thirds as large as Mercury's,
but illuminated four times as brightly, the planet would shine
nearly three times as brilliantly when seen under equally favourable
conditions during eclipse. In such an inquiry, the mean distance of the
two bodies need not be specially considered. Each planet would be seen
most favourably when in the part of its path remotest from the earth,
so that the planet nearest to the sun would on the whole have the
advantage of any difference due to that cause. For, of course, while
Mercury, being farther from the sun, approaches the earth nearer when
between the earth and sun, he recedes farther from the sun for the same
reason when on the part of his path beyond the sun.
It was perfectly clear that no such planet as Leverrier considered
necessary to reconcile theory and observation exists between the sun
and Mercury's orbit. It appeared necessary, therefore, to assume that
either there must be several smaller planets, or else that a cloud of
cosmical dust surrounds the sun. Now it is to be noticed that in either
case the entire mass of matter between Mercury and the sun must be
greater to produce the observed disturbance than the mass of a single
planet travelling at the outside of the region supposed to be occupied
either by a group of planets or a cloud of meteorites.
Public-domain text, read in full here on John Shaqi.
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