Physical science in the time of Nero : $b being a translation of the Quaestiones naturales of SenecaSeneca, Lucius Annaeus
Philosophy
Physical science in the time of Nero : $b being a translation of the Quaestiones naturales of Seneca
Seneca, Lucius Annaeus
Comets; Earthquakes; Meteorology -- Early works to 1800
It is now high time that I ran over the other varieties of celestial 1
fires, whose forms are diverse one from the other. Sometimes there
is a shooting star, sometimes there are glowing lights, which are
occasionally stationary, sticking to one spot, and at times able to
rush through the air. Several species of these may be observed. There
are, for example, _Bothynae_ (cave-like meteors) when within an outer
circle there is a blazing gulf in the sky like a circular grotto
excavated in it. Then there are _Pithitae_ (barrel-shaped meteors) when
a vast circular mass of fire like a cask either rushes through the sky,
or blazes away in one spot. There are _Chasmata_ (chasms), too, when 2
there is a subsidence of some portion of the heavens, which sends out
hissing flame, as it were, from its hidden recesses. There are also a
great number of colours in all these. Some are of brightest red, some
of light insubstantial flame, some of white light, some glittering,
some with a uniform glow of orange without sparks or rays. We see,
therefore,
The stars’ long tracks that gleam white behind.
These stars, for so they appear to be, dart forth and flit across 3
the sky, and by reason of their extraordinary rapidity seem to leave
a long trail of fire. Our sight cannot follow their course, and
wherever their career leads we imagine the heaven is all on fire.
Such is the swiftness of their flight that its separate portions are
not distinguished and it can be grasped only as a whole. We are aware
rather of the quarter in which the star appears than of its route. It,
therefore, seems to mark its entire course with a line of continuous 4
fire, because the slowness of our vision fails to keep pace with the
stages of its career and sees at the same moment the start and the
finish; as happens in a flash of lightning, the fire seems a long train
because the meteor traverses its path rapidly and the space through
which it falls presents itself to our eyes as a whole. But, as a matter
of fact, the fire does not extend itself all through the space crossed
by the meteor. Nor have such long thin bodies strength enough for the 5
effort. How, then, it may be asked, do they issue forth? The answer
is, the fire is kindled by the friction of the atmosphere and is urged
headlong by the wind. Still, it does not always arise from wind or
friction. Sometimes its origin is due to certain peculiar conditions
in the atmosphere; for on high there are many elements, dry and hot
and earthy, among which fire is generated. It then streams down in
pursuit of fuel to sustain it, and therefore is hurried rapidly along.
The reason for the differences of colour it presents lies in the 6
nature of the material set on fire and in the degree of violence of the
conflagration. A falling body of this kind betokens wind, which may be
looked for in the quarter in which the meteor has burst out.
XV
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account