The tube of the telescope when of large size is usually made of iron or
wood, and a tube of the latter substance may be made very light and yet
sufficiently strong, by wrapping layers of veneer round a central core
and fastening the layers firmly with glue. There are generally two or
more tubes sliding inside each other at the eye end of the telescope, to
carry the eyepiece so as to give plenty of power of adjustment of the
length of the tube to suit the different eyepieces, or other instruments
used in their place. The tube then is ready to be adapted to any of the
mountings to be hereafter considered.
* * * * *
We now come to the mounting of specula, and when we recollect the
enormous weights of some of the specimens to which we have referred, it
will be obvious that some additional precautions, which are not at all
necessary in the case of a refractor, must be taken to insure success.
In reflecting telescopes, the speculum is carried at the bottom of a
tube in a sort of tray or cell, which can be adjusted by screws at the
back, so as to set the mirror at right angles to the tube, and the
conditions of support should be such that the mirror should be as free
from strain as if it were floating in mercury. A system of lateral
supports in all positions is also necessary.
The action of the telescope depends greatly on the backing of the
speculum, and numerous methods of carrying specula on soft backing and
systems of levers have been suggested, all aiming at carrying them so
that they are free from all possible strain and flexure occasioned by
their own weight. For smaller mirrors a soft back of flannel or cloth
can be used, and a leather strap placed round the mirror and its back,
so as to form the side of a sort of circular tray, will give it
sufficient support when inclined to the horizontal. Mr. Browning adopts
the plan of making the back of the mirror and its support perfectly
flat, so as not to require levers or soft backing; this arrangement
would probably fail for mirrors larger than one foot in diameter,
although answering admirably for those of less size.
[Illustration:
FIG. 70.—Optical part of a Newtonian reflector of ten inches aperture,
showing eyepiece, adjusting screws for large speculum, finder, door
for uncovering speculum, and counterpoise.
]
[Illustration:
FIG. 71.—Optical part of Melbourne reflector, showing the lattice
arrangement for supporting the convex mirror _Y_, _T_ more solid
part of tube fixed to declination axis, _W_ finder.
]
[Illustration:
FIG. 72. Mr. Browning’s method of supporting small specula. The bottom
of the speculum A is a carefully prepared plane surface, and the
outer rim of the inner iron cell B, on which it rests, is also a
plane. The speculum is kept in this cell by the ring G G, and it may
be removed from, and replaced in, the telescope, without altering
its adjustment.
]
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