_Electric Force._--If a small conducting body is charged with Q
electrostatic units of electricity, and placed in any electric field at
a point where the electric force has a value E, it will be subject to a
mechanical force equal to QE dynes, tending to move it in the direction
of the resultant electric force. This provides us with a definition of a
unit of electric force, for it is the strength of an electric field at
that point where a small conductor carrying a unit charge is acted upon
by unit mechanical force, assuming the dielectric constant of the
surrounding medium to be unity. To avoid unnecessary complications we
shall assume this latter condition in all the following discussion,
which is equivalent simply to assuming that all our electrical
measurements are made in air or _in vacuo_.
Owing to the confusion introduced by the employment of the term force,
Maxwell and other writers sometimes use the words _electromotive
intensity_ instead of electric force. The reader should, however, notice
that what is generally called electric force is the analogue in
electricity of the so-called acceleration of gravity in mechanics,
whilst electrification or quantity of electricity is analogous to mass.
If a mass of M grammes be placed in the earth's field at a place where
the acceleration of gravity has a value g centimetres per second, then
the mechanical force acting on it and pulling it downwards is Mg dynes.
In the same manner, if an electrified body carries a positive charge Q
electrostatic units and is placed in an electric field at a place where
the electric force or electromotive intensity has a value E units, it is
urged in the direction of the electric force with a mechanical force
equal to QE dynes. We must, however, assume that the charge Q is so
small that it does not sensibly disturb the original electric field, and
that the dielectric constant of the insulator is unity.
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