The Practical Astronomer: Comprising illustrations of light and colours--practical descriptions of all kinds of telescopes--the use of the equatorial-transit--circular, and other astronomical instruments, a particular account of the Earl of Rosse's large telescopes, and other topics connected with astronomyDick, Thomas
Science
The Practical Astronomer: Comprising illustrations of light and colours--practical descriptions of all kinds of telescopes--the use of the equatorial-transit--circular, and other astronomical instruments, a particular account of the Earl of Rosse's large telescopes, and other topics connected with astronomy
Dick, Thomas
Astronomical instruments; Astronomy; Telescopes
Having put up a small circle of paper, an inch or two in diameter, at
the distance of about 100 yards, draw upon a card 2 black parallel
lines, whose distance from each other is equal to the diameter of the
paper circle. Then view through the telescope the paper circle with one
eye, and the parallel lines with the other; and let the parallel lines
be moved nearer to or further from, the eye, till they seem exactly
to cover the small circle viewed through the telescope. The quotient
obtained by dividing the distance of the paper circle by the distance
of the parallel lines from the eye, will be the magnifying power of the
telescope. It requires a little practice before this experiment can
be performed with accuracy. The one eye must be accustomed to look at
an object near at hand, while the other is looking at a more distant
object through the telescope. Both eyes must be open at the same time,
and the image of the object seen through the telescope must be brought
into apparent contact with the real object near at hand. But a little
practice will soon enable any observer to perform the experiment with
ease and correctness, if the telescope be mounted on a firm stand, and
its elevation or depression produced by rack-work.
The following is another method, founded on the same
principle:--Measure the space occupied by a number of the courses, or
rows of bricks in a modern building--which, upon an average, is found
to have 8 courses in 2 feet, so that each course or row, is 3 inches.
Then cut a piece of paper 3 inches in height, and of the length of a
brick--which is about 9 inches--so that it may represent a brick, and
fixing the paper against the brick wall, place the telescope to be
examined at the distance of about 80 or 100 yards from it. Now, looking
through the telescope at the paper with one eye, and at the same time,
with the other eye, looking past the telescope, observe what extent of
wall the magnified image of the paper appears to cover, then count the
courses of bricks in that extent, and it will give the magnifying power
of the telescope. It is to be observed, however, that the magnifying
power determined in this way, will be a fraction greater than for very
distant objects, as the focal distance of the telescope is necessarily
lengthened in order to obtain distinct vision of near objects.
Public-domain text, read in full here on John Shaqi.
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