Home-made Electrical ApparatusMorgan, Alfred Powell
Science
Home-made Electrical Apparatus
Morgan, Alfred Powell
Electric apparatus and appliances -- Amateurs' manuals
The arrangement shown in Figure 32 is a very convenient one to follow in
arranging a battery of three or more cells. The elements of three cells
are all mounted upon a strip of paraffined wood and connected in series.
The three battery jars are placed in a row so that each pair of elements
will dip into their proper jar when the strip is laid across the tops.
Such an arrangement is not only more compact than one having the
elements composing each cell mounted upon separate strips, but will be
found very convenient when an electrolyte composed of bichromate of
potash and acid is used, because all the elements may then be raised out
of the solutions at the same time.
It is possible to place the jars in a frame and arrange a windlass
fitted with a crank so that the elements may be easily raised or lowered
from and to the solution. Such an arrangement is called a "plunge
battery."
Connecting Cells.
Cells may be connected either in *series*, in *multiple*, or in
*series-multiple*, depending upon the number of cells to be used and the
amperage and voltage desired.
[Illustration: FIG. 33.—Showing how Cells are arranged when they are
connected in Series. The Voltage of Six Dry Cells connected in series as
above would be approximately 6 x 1.5 or 9 Volts.]
Cells are in series when they are connected with a wire leading from the
negative pole of one of the positive pole of another, so that the
current flows through each one in turn. Figure 33 shows six cells
connected in series. Cells are placed in series when voltage is the most
important factor. The total voltage of the battery is then equal to the
sum of the voltages of the cells. For example, the voltage of the
ordinary dry cell is about 1.5 and therefore if four dry cells are
connected in series the total voltage of the battery will be six. If six
dry cells are connected in series the voltage at the terminals will be
about nine.
When a heavy amperage is desired, cells are connected in multiple.
Figure 34 shows six cells connected in multiple. It will be noticed that
all the negative poles are connected together to form one terminal,
while all the positive poles form another. The amperage of the average
dry cell is about 20. The amperage of a battery of cells connected in
multiple is equal to the sum of the amperages of the separate cells. The
amperage of four cells connected in multiple will be about 80 and about
120 in the case of six cells.
[Illustration: FIG. 34.—Showing Six Dry Cells connected in Multiple. The
Voltage of such an arrangement would only be 1.5, but the Amperage
available would be six times that possible from Cells connected as in
Figure 33.]
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