When he wanted to point his instrument exactly to a star he was
confronted with precisely the same difficulty as is met in gunnery and
rifle-shooting. The sights and the object aimed at cannot be in focus
together, and a great deal depends on the form of sight. Tycho Brahe
invented, and applied to the pointers of his instruments, an
aperture-sight of variable area, like the iris diaphragm used now in
photography. This enabled him to get the best result with stars of
different brightness. The telescope not having been invented, he could
not use a telescopic-sight as we now do in gunnery. This not only
removes the difficulty of focussing, but makes the minimum visible
angle smaller. Helmholtz has defined the minimum angle measurable with
the naked eye as being one minute of arc. In view of this it is simply
marvellous that, when the positions of Tycho’s standard stars are
compared with the best modern catalogues, his probable error in right
ascension is only ± 24”, 1, and in declination only ± 25”, 9.
Clocks of a sort had been made, but Tycho Brahe found them so
unreliable that he seldom used them, and many of his
position-measurements were made by measuring the angular distances from
known stars.
Taking into consideration the absence of either a telescope or a clock,
and reading his account of the labour he bestowed upon each
observation, we must all agree that Kepler, who inherited these
observations in MS., was justified, under the conditions then existing,
in declaring that there was no hope of anyone ever improving upon them.
In the year 1572, on November 11th, Tycho discovered in Cassiopeia a
new star of great brilliance, and continued to observe it until the end
of January, 1573. So incredible to him was such an event that he
refused to believe his own eyes until he got others to confirm what he
saw. He made accurate observations of its distance from the nine
principal stars in Casseiopeia, and proved that it had no measurable
parallax. Later he employed the same method with the comets of 1577,
1580, 1582, 1585, 1590, 1593, and 1596, and proved that they too had no
measurable parallax and must be very distant.
The startling discovery that stars are not necessarily permanent, that
new stars may appear, and possibly that old ones may disappear, had
upon him exactly the same effect that a similar occurrence had upon
Hipparchus 1,700 years before. He felt it his duty to catalogue all the
principal stars, so that there should be no mistake in the future.
During the construction of his catalogue of 1,000 stars he prepared and
used accurate tables of refraction deduced from his own observations.
Thus he eliminated (so far as naked eye observations required) the
effect of atmospheric refraction which makes the altitude of a star
seem greater than it really is.
Public-domain text, read in full here on John Shaqi.
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