Triumphs and Wonders of the 19th Century: The True Mirror of a Phenomenal Era: A volume of original, entertaining and instructive historic and descriptive writings, showing the many and marvellous achievements which distinguish an hundred years of material, intellectual, social and moral progressBoyd, James P. (James Penny)
History
Triumphs and Wonders of the 19th Century: The True Mirror of a Phenomenal Era: A volume of original, entertaining and instructive historic and descriptive writings, showing the many and marvellous achievements which distinguish an hundred years of material, intellectual, social and moral progress
Boyd, James P. (James Penny)
Inventions; Progress
AMPERE:—Electrical force produces electrical current. Current must
be measured and an absolute unit of current strength agreed upon. The
“Absolute Unit of Current” was settled as one of such strength as that
when one centimetre length of its circuit is bent into an arc of one
centimetre radius, the current in it exerts a force of one dyne on a
unit magnet-pole placed at the centre. But the absolute unit of current
as thus obtained was decided to be ten times too great for practical
purposes. So a practical unit of current was fixed upon, which is just
one tenth part of the above absolute unit of current. This practical
unit of current was called the ampere, in honor of the celebrated
French electrician, Ampère. It may be ascertained in other ways,
as when a current is of sufficient strength to deposit in a copper
electrolytic cell 1.174 grammes (18.116 grains) of copper in an hour,
such current is said to be of one ampere strength; or a current of one
ampere strength is such a one as would be given by an electro-motive
force of one volt through a wire offering one ohm of resistance.
VOLT:—This was named from Volta, the celebrated Italian electrician,
and was agreed upon as the unit of electro-motive force. It is that
electro-motive force which would be generated by a conductor cutting
across 100,000,000 C. G. S. lines in a field of force per second; or it
is that electro-motive force which would carry one ampere of current
against one ohm of resistance.
OHM:—So called from Ohm, a German electrician. It is the unit of
resistance offered by a conductor to the passage of an electrical
current. As an absolute unit of resistance, it is equal to
1,000,000,000 C. G. S. units of resistance. As a practical unit, and
as agreed upon at the International Congress of Electricians (Chicago,
1893), it represents the resistance offered to an electric current at
the temperature of melting ice by a column of mercury 14.451 grammes
in mass, of a constant cross-sectional area, and 106.3 centimetres in
length. This is called the international ohm. The resistance offered by
400 feet of ordinary telegraph wire is about an ohm.
These three units—ampere, volt, and ohm—are the factors in
Ohm’s famous law that the current is directly proportional to the
electro-motive force exerted in a circuit, and inversely proportional
to the resistance of the circuit; that is,—
Current = Electro-motive force / Resistance
or,
Electro-motive force = Current × Resistance
or
Resistance = Electro-motive force / Current.
ERG:—From the Greek _ergon_, work, is the unit of work required to
move a force of one dyne one centimetre. One foot-pound equals 13,560
ergs.
CALORIE:—Latin _calor_, heat, is the unit of heat; being the amount
of heat required to raise the temperature of one kilogram of water one
degree centigrade.
Public-domain text, read in full here on John Shaqi.
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