On the Connexion of the Physical SciencesSomerville, Mary
Science
On the Connexion of the Physical Sciences
Somerville, Mary
Physical sciences; Science
Since the number of revolutions which the revolving mirror makes in a
second is known, and the angular deviation of the reflection of the
single spark from the reflection of the other two can be measured, the
time elapsed between their consecutive reflections can be ascertained.
And, as the length of that part of the wire through which the
electricity has passed is given, its velocity may be found.
The number of pulses in a second, requisite to produce a musical note of
any pitch, are known; hence the number of revolutions accomplished by
the mirror in a given time may be determined from the musical note
produced by a tooth or peg, in its axis of rotation, striking against a
card, or from the notes of a siren attached to the axis. It was thus
that Professor Wheatstone found the mirror which he employed in his
experiments made 800 revolutions in a second; and, as the angular
velocity of the reflected image in a revolving mirror is double that of
the mirror itself, an angular deviation of one degree in the appearance
of the two sparks would indicate an interval of the 576,000th of a
second; the deviation of half a degree would, therefore, indicate more
than the millionth of a second. The use of sound as a measure of
velocity is a happy illustration of the connexion of the physical
sciences.
The earth possesses a powerful electrical tension, and the atmosphere
when clear is almost always positively electric. Its electricity is
stronger in winter than in summer, during the day than in the night. The
intensity increases for two or three hours from the time of sunrise,
comes to a maximum between seven and eight, then decreases towards the
middle of the day, arrives at its minimum between one and two, and again
augments as the sun declines till about the time of sunset, after which
it diminishes and continues feeble during the night. The mere
condensation of vapour is a source of atmospheric electricity; but
although it is also produced by the vapour that rises from the surface
of the earth, it is not under all circumstances. M. Pouillet found that
electricity is only developed when accompanied by chemical action: for
example, when the water whence the vapour proceeds contains lime, chalk,
or any solid alkali, negative electricity is produced; and when it holds
in solution either gas, acid, or some of the salts, the vapour is
positively electric. Besides, the contact of earth with salt and fresh
water generates positive electricity, and the contact of fresh and salt
currents of water negative, so that the ocean must afford a great supply
to the atmosphere; hence thunderstorms are most frequent near the
coasts: but as electricity of one kind or another is developed whenever
the molecules of matter are deranged from their natural state of
equilibrium, there must be many partial variations in the electric state
of the air. When the invisible vapour rises charged with electricity
into the cold regions of the atmosphere, it is condensed into cloud, in
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