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 first observation which I shall notice refers to the _nebula_
between η and ζ Ophiuchi, discovered by Messier in 1764. The
observation was made with a 10 feet reflector, having a magnifying
power of 250, and a space-penetrating power of 28.67. His note is dated
May 3, 1783. ‘I see several stars in it, and make no doubt a higher
power and more light will resolve it all into stars. This seems to me
a good nebula for the purpose of establishing the connection between
nebulæ and clusters of stars in general.’--‘June 18, 1784. The same
nebula viewed with a Newtonian 20 feet reflector; penetrating power 61,
and a magnifying power of 157; a very large and a very bright cluster
of excessively compressed stars. The stars are but just visible, and
are of unequal magnitudes. The large stars are red, the cluster is a
miniature of that near Flamstead’s forty-second Comæ Berenices; Right
ascension 17^h 6^m 32^s Polar distance 108° 18´´’ In this case, a
penetrating power of about 28, with a magnifying power of 250, barely
shewed a few stars; when in the second instrument the illuminating
power of 60 with the magnifying power of only 157 showed them
completely.
Subsequently to the date of the latter observation, the 20 feet
Newtonian telescope was converted into an Herschelian instrument, by
taking away the small speculum, and giving the large one the proper
inclination for obtaining the front view; by which alteration the
illuminating power was increased from 61 to 75, and the advantage
derived from the alteration was evident in the discovery of the
satellites of Uranus by the altered telescope, which before was
incompetent in the point of penetration, or illuminating power. ‘March
14, 1798, I viewed the Georgian planet (or Uranus) with a new 25 feet
reflector. Its penetrating power is 95.85, and having just before
also viewed it with my 20 feet instrument, I found that with an equal
magnifying power of 300, the 25 feet telescope had considerably the
advantage of the former.’ The aperture of the 20 feet instrument was
18.8 inches, and that of the 25 feet telescope, 24 inches, so that
the superior effect of the latter instrument must have been owing
to its greater illuminating power. The following observations show
the superior power of the 40 feet telescope as compared with the 20
feet.--‘Feb. 24, 1786, I viewed the nebula near Flamstead’s fifth
Serpentis, with my 20 feet reflector, magnifying power 157. The most
beautiful extremely compressed cluster of small stars; the greatest
part of them gathered together into one brilliant nucleus, evidently
consisting of stars, surrounded with many detached gathering stars of
the same size and colour. R.A. 15^h 7^m 12^s. P.D. 87° 8´´’--‘May 27,
1791, I viewed the same object with my 40 feet telescope, penetrating
power 191.69, magnifying power 370. A beautiful cluster of stars. I
counted about 200 of them. The middle of it is so compressed, that
it is impossible to distinguish the stars.’--‘Nov. 5, 1791, I viewed
Public-domain text, read in full here on John Shaqi.
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