Light Science for Leisure Hours: A series of familiar essays on scientific subjects, natural phenomena, &c.Proctor, Richard A. (Richard Anthony)
Science
Light Science for Leisure Hours: A series of familiar essays on scientific subjects, natural phenomena, &c.
Proctor, Richard A. (Richard Anthony)
Science
At the time of a transit Venus is of course on a line between the earth
and the sun, and she is at somewhat less than a third of the sun’s
distance from us. Thus whatever effect an observer’s change of place
would produce upon the sun would be more than trebled in the case of
Venus. But it must not be forgotten that we are to judge the motions
of Venus by means of the dial-plate formed by the solar disc, and that
dial-plate is itself shifted as the observer shifts his place. Venus is
shifted three times as much, it is true; but it is only the balance of
change that our astronomer can recognise. That balance is, of course,
rather more than twice as great as the sun’s change of place.
So far, then, we have not gained much, since it has been already
mentioned that the sun’s change of place is not measurable by any
process of observation astronomers can apply.
It is to the fact that we have the sun’s disc, whereby to measure the
change, that we chiefly trust; and even that would be insufficient were
it not for the fact that Venus is not at rest, but travels athwart the
great solar dial-plate. We are thus enabled to make a time measurement
take the place of a measurement of space. If an observer in one place
sees Venus cross the sun’s face at a certain distance from the centre,
while an observer at another place sees her follow a path slightly
farther from the centre, the transit clearly seems longer to the former
observer than to the latter.
This artifice of exchanging a measurement of time for one of space—or
_vice versâ_—is a very common one among astronomers. It was Edmund
Halley, the friend and pupil of Sir Isaac Newton, who suggested its
application in the way above described. It will be noticed that what
is required for the successful application of the method is that one
set of observers should be as far to the north as possible, another as
far to the south, so that the path of Venus may be shifted as much as
possible. Clearly the northern observers will see her path shifted as
much to the south as it can possibly be, while the southern observers
will see the path shifted as far as possible towards the north.
One thing, however, is to be remembered. A transit lasts several hours,
and our observers must be so placed that the sun will not set during
these hours. This consideration sometimes involves a difficulty. For
our earth does not supply observing room all over her surface, and the
region where observation would be most serviceable may be covered by
a widely-extended ocean. Then again, the observing parties are being
rapidly swayed round by the rotating earth and it is often difficult
to fix on a spot which may not, through this cause, be shifted from a
favourable position at the beginning of the transit to an unfavourable
one at the end.
Public-domain text, read in full here on John Shaqi.
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