316. Current, Voltage, Resistance. We learned in Section 287 that
the strength of a current increases when the electromotive force
increases, and diminishes when the electromotive force diminishes.
Later, in Section 288, we learned that the strength of the current
decreases as the resistance in circuit increases.
The strength of a steady current depends upon these two factors only,
the electromotive force which causes it and the resistance which it
has to overcome.
317. Resistance. Since resistance plays so important a role in
electricity, it becomes necessary to have a unit of resistance. The
practical unit of resistance is called an ohm, and some idea of the
value of an ohm can be obtained if we remember that a 300-foot length
of common iron telegraph wire has a resistance of 1 ohm. An
approximate ohm for rough work in the laboratory may be made by
winding 9 feet 5 inches of number 30 copper wire on a spool or
arranging it in any other convenient form.
In Section 299 we learned that substances differ very greatly in the
resistance which they offer to electricity, and so it will not
surprise us to learn that while it takes 300 feet of iron telegraph
wire to give 1 ohm of resistance, it takes but 39 feet of number 24
copper wire, and but 2.2 feet of number 24 German silver wire, to give
the same resistance.
NOTE. The number of a wire indicates its diameter; number
30, for example, being always of a definite fixed diameter,
no matter what the material of the wire.
If we wish to avoid loss of current by heating, we use a wire of low
resistance; while if we wish to transform electricity into heat, as in
the electric stove, we choose wire of high resistance, as German
silver wire.
CHAPTER XXXV
HOW ELECTRICITY IS OBTAINED ON A LARGE SCALE
318. The Dynamo. We have learned that cells furnish current as a
result of chemical action, and that the substance usually consumed
within the cell is zinc. Just as coal within the furnace furnishes
heat, so zinc within the cell furnishes electricity. But zinc is a
much more expensive fuel than coal or oil or gas, and to run a large
motor by electricity produced in this way would be very much more
expensive than to run the motor by water or steam. For weak and
infrequent currents such as are used in the electric bell, only small
quantities of zinc are needed, and the expense is small. But for the
production of such powerful currents as are needed to drive trolley
cars, elevators, and huge machinery, enormous quantities of zinc would
be necessary and the cost would be prohibitive. It is safe to say that
electricity would never have been used on a large scale if some less
expensive and more convenient source than zinc had not been found.
Public-domain text, read in full here on John Shaqi.
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