Beacon Lights of History, Volume 14: The New Era: A Supplementary Volume, by Recent Writers, as Set Forth in the Preface and Table of ContentsLord, John
Philosophy
Beacon Lights of History, Volume 14: The New Era: A Supplementary Volume, by Recent Writers, as Set Forth in the Preface and Table of Contents
Lord, John
History
Faraday knew that the space or region around a magnet is permeated or
traversed by what he called magnetic curves, or lines of magnetic force.
These lines are still called "lines of magnetic force," or by some
"magnetic streamings" "magnetic flux," or simply "magnetism." They are
invisible, though their presence is readily manifested by means of iron
filings. They are present in every magnet, and although we do not know
in what direction they move, yet in order to speak definitely about
them, it is agreed to assume that they pass out of every magnet at its
north-seeking pole (or the pole which would point to the magnetic north,
were the magnet free to move as a needle), and, after having traversed
the space surrounding the magnet, reenter at its south-seeking pole,
thus completing what is called the magnetic circuit. Any space traversed
by lines of magnetic force is called a magnetic field.
But it is not only a magnet that is thus surrounded by lines of
magnetic force, or by ether streamings. The same is true of any
conductor through which an electric current is flowing, and their
presence may be shown by means of iron filings. If an active
conductor--a conductor conveying an electric current, as, for example, a
copper wire--be passed vertically through a piece of card-board, or a
glass plate, iron filings dusted on the card or plate will arrange
themselves in concentric circles around the axis of the wire. It
requires an expenditure of energy both to set up and to maintain these
lines of force. It is the interaction of their lines of force that
causes the attractions and repulsions in active movable conductors.
These lines of magnetic force act on magnetic needles like other lines
of magnetic force and tend to set movable magnetic needles at right
angles to the conducting wire.
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