In the absolute determination of capacity we have to measure the ratio
of the charge of a condenser to its plate potential difference. One of
the best methods for doing this is to charge the condenser by the
known voltage of a battery, and then discharge it through a
galvanometer and repeat this process rapidly and successively. If a
condenser of capacity C is charged to potential V, and discharged n
times per second through a galvanometer, this series of intermittent
discharges is equivalent to a current nCV. Hence if the galvanometer
is calibrated by a potentiometer (q.v.) we can determine the value of
this current in amperes, and knowing the value of n and V thus
determine C. Various forms of commutator have been devised for
effecting this charge and discharge rapidly by J.J. Thomson, R.T.
Glazebrook, J.A. Fleming and W.C. Clinton and others.[11] One form
consists of a tuning-fork electrically maintained in vibration of
known period, which closes an electric contact at every vibration and
sets another electromagnet in operation, which reverses a switch and
moves over one terminal of the condenser from a battery to a
galvanometer contact. In another form, a revolving contact is used
driven by an electric motor, which consists of an insulating disk
having on its surface slips of metal and three wire brushes a, b, c
(see fig. 2) pressing against them. The metal slips are so placed
that, as the disk revolves, the middle brush, connected to one
terminal of the condenser C, is alternately put in conductive
connexion with first one and then the other outside brush, which are
joined respectively to the battery B and galvanometer G terminals.
From the speed of this motor the number of commutations per second can
be determined. The above method is especially useful for the
determinations of very small capacities of the order of 100
electrostatic units or so and upwards.
[Illustration: FIG. 2.]
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