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
When the object-glass is thus adjusted, it may then be ascertained
whether the curves of the respective lenses composing the object-glass
are well-formed and suitable for each other. If a small motion of the
sliding tube of about 1/10th of an inch in a 3-1/2 feet telescope, from
the point of distinct vision, will dilute the light of the disk and
render the appearance confused, the figure of the object-glass is good;
particularly if the same effect will take place at equal distances
from the point of distinct vision, when the tube is alternately drawn
out and pushed in. A telescope that will admit of much motion in the
sliding tube without sensibly affecting the distinctness of vision,
will not define an object well at any point of adjustment, and must
be considered as having an imperfect object-glass, inasmuch as the
spherical aberration of the transmitted rays is not duly corrected. The
due adjustment of the convex lens, or lenses, to the concave one, will
be judged of by the absence of coloration round the enlarged disk, and
is a property distinct from the spherical aberration; the achromatism
depending on the relative focal distances of the convex and concave
lenses, is regulated by the relative dispersive powers of the pieces
of glass made use of; but the distinctness of vision depends on a good
figure of the computed curves that limit the focal distances. When an
object-glass is free from imperfection in both these respects, it may
be called a good glass for terrestrial purposes.
It still, however, remains to be determined how far such an
object-glass may be good for viewing a star or a planet, and can only
be known by actual observations on the heavenly bodies. When a good
telescope is directed to the moon or to Jupiter, the achromatism
may be judged of, by alternately pushing in, and drawing out the
eye-piece, from the place of distinct vision. In the former case, a
ring of purple will be formed round the edge; and in the latter, a
ring of light green, which is the central colour of the prismatic
spectrum; for these appearances show, that the extreme colours red
and violet are corrected. Again, if one part of a lens employed have
a different refractive power from another part of it, that is, if the
flint-glass particularly is not homogeneous, a star of the first and
even of the second magnitude will point out the natural defect by the
exhibition of an irradiation, or what is called _a wing_, at one side,
which no perfection of figure or of adjustment will banish, and the
greater the aperture the more liable is the evil to happen. Hence caps
with different apertures are usually supplied with large telescopes,
that the extreme parts of the glass may be cut off, in observations
requiring a round and well-defined image of the body observed.
Public-domain text, read in full here on John Shaqi.
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