Astronomy of To-day: A Popular Introduction in Non-Technical LanguageDolmage, Cecil Goodrich Julius
Science
Astronomy of To-day: A Popular Introduction in Non-Technical Language
Dolmage, Cecil Goodrich Julius
Astronomy
With regard to its chemical composition, the spectroscope shows us that
thirty-nine of the elements which are found upon our earth are also to
be found in the sun. Of these the best known are hydrogen, oxygen,
helium, carbon, calcium, aluminium, iron, copper, zinc, silver, tin, and
lead. Some elements of the metallic order have, however, not been found
there, as, for instance, gold and mercury; while a few of the other
class of element, such as nitrogen, chlorine, and sulphur, are also
absent. It must not, indeed, be concluded that the elements apparently
missing do not exist at all in the solar body. Gold and mercury have, in
consequence of their great atomic weight, perhaps sunk away into the
centre. Again, the fact that we cannot find traces of certain other
elements, is no real proof of their entire absence. Some of them may,
for instance, be resolved into even simpler forms, under the unusual
conditions which exist in the sun; and so we are unable to trace them
with the spectroscope, the experience of which rests on laboratory
experiments conducted, at best, in conditions which obtain upon the
earth.
[10] On November 15, 1907, Dr. A. Rambaut, Radcliffe Observer at Oxford
University, noted a prominence which rose to a height of 324,600 miles.
CHAPTER XIV
THE INFERIOR PLANETS
Starting from the centre of the solar system, the first body we meet
with is the planet Mercury. It circulates at an average distance from
the sun of about thirty-six millions of miles. The next body to it is
the planet Venus, at about sixty-seven millions of miles, namely, about
double the distance of Mercury from the sun. Since our earth comes next
again, astronomers call those planets which circulate within its orbit,
_i.e._ Mercury and Venus, the Inferior Planets, while those which
circulate outside it they call the Superior Planets.[11]
In studying the inferior planets, the circumstances in which we make our
observations are so very similar with regard to each, that it is best to
take them together. Let us begin by considering the various positions of
an inferior planet, as seen from the earth, during the course of its
journeys round the sun. When furthest from us it is at the other side of
the sun, and cannot then be seen owing to the blaze of light. As it
continues its journey it passes to the left of the sun, and is then
sufficiently away from the glare to be plainly seen. It next draws in
again towards the sun, and is once more lost to view in the blaze at
the time of its passing nearest to us. Then it gradually comes out to
view on the right hand, separates from the sun up to a certain distance
as before, and again recedes beyond the sun, and is for the time being
once more lost to view.
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