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
The _tube_ of this telescope is made of rolled or sheet iron, joined
together without rivets; the thickness of the sheets is somewhat less
than 1/36 part of an inch, or 14 pounds weight for a square foot;
great care was taken that the cylindrical form should be secured, and
the whole was coated over three or four times with paint, inside and
outside, to secure it against the damp. This tube was removed from
the place in which it was formed by twenty-four men, divided into six
sets; so that two men on each side, with a pole of 5 feet long in
their hands, to which was affixed a piece of course cloth, 7 feet long
going under the tube, and joined to a pole 5 feet long, in the hands
of two other men, assisted in carrying the tube. The _length_ of this
tube is 39 feet 4 inches, the diameter 4 feet 10 inches; and, on a
moderate computation, it was ascertained, that a wooden tube of proper
dimensions would have exceeded an iron one in weight by at least 3000
pounds. Reckoning the circumference of the tube 15 feet, its length
39-1/3 feet, and 14 lib. for the weight of a square foot, it must have
contained 590 square feet, and weighed 8,260 pounds. Various hoops were
fixed within the tube, and longitudinal bars of iron connecting some of
them are attached to the two ends of the tube, by way of bracing the
sheets, and preserving the shape perfect, when the pulleys are applied
to give the necessary elevation at the upper end, and that the speculum
may be kept secure at the lower end. The lower end of the tube is
firmly supported on rollers that are capable of being moved forwards or
backwards by a double rack, connected with a set of wheels and pinions.
By an adjustment at the lower extremity of the tube, the speculum is
turned to a small inclination, so that the line of collimation may not
be coincident with the longitudinal axis of the tube, but may cross the
tube diagonally, and meet the eye in the air at about two inches from
the edge of the tube, which is the peculiarity of the construction,
that supersedes the necessity of applying a second reflector. Hence no
part of the head of the observer intercepts the incident rays, and the
observation is taken with the face looking at the speculum, the back
being turned to the object to be observed.
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