A Preliminary Dissertation on the Mechanisms of the HeavensSomerville, Mary
Science
A Preliminary Dissertation on the Mechanisms of the Heavens
Somerville, Mary
Celestial mechanics
Some remarkable astronomical eras are determined by the position of the
major axis of the solar ellipse. Moving at the rate of 61"·906
annually, it accomplishes a tropical revolution in 20935 years. It
coincided with the line of the equinoxes 4000 or 4089 years before the
Christian era, much about the time chronologists assign for the creation
of man. In 6485 the major axis will again coincide with the line of the
equinoxes, but then the solar perigee will coincide with the equinox of
spring; whereas at the creation of man it coincided with the autumnal
equinox. In the year 1250 the major axis was perpendicular to the line
of the equinoxes, and then the solar perigee coincided with the solstice
of winter, and the apogee with the solstice of summer. On that account
La Place proposed the year 1250 as a universal epoch, and that the
vernal equinox of that year should be the first day of the first year.
The variations in the positions of the solar ellipse occasion
corresponding changes in the length of the seasons. In its present
position spring is shorter than summer, and autumn longer than winter;
and while the solar perigee continues as it now is, between the solstice
of winter and the equinox of spring, the period including spring and
summer will be longer than that including autumn and winter: in this
century the difference is about seven days. These intervals will be
equal towards the year 6485, when the perigee comes to the equinox of
spring. Were the earth's orbit circular, the seasons would be equal;
their differences arise from the eccentricity of the earth's orbit,
small as it is; but the changes are so gradual as to be imperceptible in
the short space of human life.
No circumstance in the whole science of astronomy excites a deeper
interest than its application to chronology. 'Whole nations,' says La
Place, 'have been swept from the earth, with their language, arts and
sciences, leaving but confused masses of ruin to mark the place where
mighty cities stood; their history, with the exception of a few doubtful
traditions, has perished; but the perfection of their astronomical
observations marks their high antiquity, fixes the periods of their
existence, and proves that even at that early period they must have made
considerable progress in science.'
The ancient state of the heavens may now be computed with great
accuracy; and by comparing the results of computation with ancient
observations, the exact period at which they were made may be verified
if true, or if false, their error may be detected. If the date be
accurate, and the observation good, it will verify the accuracy of
modern tables, and show to how many centuries they may be extended,
without the fear of error. A few examples will show the importance of
this subject.
Public-domain text, read in full here on John Shaqi.
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