Rough Ways Made Smooth: A series of familiar essays on scientific subjectsProctor, Richard A. (Richard Anthony)
Science
Rough Ways Made Smooth: A series of familiar essays on scientific subjects
Proctor, Richard A. (Richard Anthony)
Science
The use of galvanic batteries to generate an electric current strong
enough for the production of a brilliant light, is open to several
objections, especially on the score of expense. It may, indeed, be
safely said that if no other way of obtaining currents of sufficient
intensity had ever been devised, the electric light would scarcely
have been thought of for purposes of general illumination, however
useful in special cases. (In the electric lighting of the New Opera
House at Paris, batteries are used.) The discovery by Orsted that an
electric current can make iron magnetic, and the series of discoveries
by Faraday, in which the relation between magnetism and electricity
was explained, made electric lighting practically possible. One of
these shows that if a properly insulated wire coil is rapidly rotated
in front of a fixed permanent magnet (or of a set of such magnets),
currents will be induced in the coil, which may be made to produce
either alternating currents or currents in one direction only, in wire
conductors. An instrument for generating electric currents in this way,
by rapidly rotating a coil in front of a series of powerful permanent
magnets fixed symmetrically around it, is called a magneto-electric
machine. Another method, now generally preferred, depends on the
rotation of a coil in front of an electro-magnet; that is, of a bar
of soft iron (bent in horseshoe form), which can be rendered magnetic
by the passage of an electric current through a coil surrounding it.
The rapid rotation of the coil in front of the soft iron generates
a weak current, because iron always has some traces of magnetism
in it, especially if it has once been magnetised. This weak current
being caused to traverse the coil surrounding the soft iron increases
its magnetism, so that somewhat stronger currents are produced in
the revolving coil. These carried round the soft iron still further
increase its magnetism, and so still further strengthen the current.
In this way coil and magnet act and react on each other, until from
the small effects due to the initial slight magnetism of the iron,
both coil and the magnet become, so to speak, saturated. Machines
constructed on this principle are called dynamo-electric machines,
because the generation of electricity depends on the dynamical force
employed in rapidly rotating the coils.
We need not consider here the various forms which magneto-electric
and dynamo-electric machines have received. It is sufficient that
the reader should recognise how we obtain an electric current of
great intensity in one case from mechanical action and permanent
magnetism,[25] and in the other from mechanical action and the mere
residue of magnetism always present in iron.
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