Inventors at Work, with Chapters on DiscoveryIles, George
History
Inventors at Work, with Chapters on Discovery
Iles, George
Inventions -- History; Inventors
Currents of air much less forceful than those of steam in a turbine are
generated by the electric fans of our shops and offices. When their
vanes move as the hands of a clock, a breeze comes toward you; reverse
their motion and the stream blows away from you. Place such a fan in the
side of a box otherwise closed; driven in one direction the vanes force
air into the box; driven the opposite way the vanes remove air from the
box. Powerful currents of this kind, such as stream from a Sturtevant
blower, are used for blast furnaces and the largest steam installations.
The engineer chooses between two methods; he can seal up the fire-room
and force in air which will find its way through the grate-bars to the
fuel, or he places a fan in the smoke-stack to induce a current by
exhaustion. In New York and London underground pneumatic tubes carry
letters to and from the post-offices. When the central engine works its
fans exhaustively, water may be drawn into the tubes from the streets so
as to do much harm. When the ground is thoroughly dry it is best to
exhaust the air at one end of the line and compress it at the other.
This union of a push and a pull resembles Lord Kelvin’s plan in ocean
telegraphy, by which a cable is first connected with the negative pole
of a battery and then, for a signal, made to touch the positive pole.
With its path thus cleared, a message pulses along at a redoubled pace.
Electrical Reciprocity.
Electrical art teems with rules that work both ways. Oersted observed
that a current traversing a wire deflects a nearby compass needle.
Faraday, with the guiding law of reciprocity ever in mind, forcibly
deflected a magnetic needle so as to create a current in a neighboring
wire by the motion of his hand. He thus discovered magneto-electricity,
in Tyndall’s opinion the greatest result ever obtained by an experiment.
On the simple principle then discovered by Faraday are built the huge
generators that revolve at Niagara, at power-houses large and small
throughout the world, for the production of electricity by mechanical
motion. A compass needle has a field, or breadth of influence,
surrounding its surface, which is small and weak. A monster magnet in a
generator has a field at once large and strong. When an electrical
conductor, such as a coil of copper wire, is forcibly rotated in that
field, powerful currents of electricity arise in the wire, equivalent as
energy to the mechanical effort of rotation. Take another case: a
current decomposes water; the resulting gases as they combine yield just
such a current as that which parted them. Join a strip of bismuth to a
strip of antimony, and let a current traverse the pair; the junction
will become heated. At another time, using no current, touch that joint
with the hand for a moment; the communicated warmth, though trifling in
amount, creates a current plainly revealed by a galvanometer, affording
a delicate means of detecting minute changes of temperature. In 1874 M.
Public-domain text, read in full here on John Shaqi.
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