Silver, copper, iron, aluminum and many other metals are very good
conductors. Water, acids, and salts are too. Electricity passes over or
through them very easily. Like water pipes, the larger the conductor,
the more electricity it can carry. When conductors are too small for the
amount of electrons trying to move over them, they get hot, melt, may
start fires. That's why wire size is important.
Electrical Insulators
Insulators are the opposite of conductors. Electricity has trouble
passing through some materials. Rubber, most plastics, dry wood, oils
and glass are some of the good insulators. It's the amount and kind of
insulation that counts. If it has enough force, electricity can pass
through just about anything--even jump gaps!
Electricity, like water, flows along the easiest paths. It is always
trying to get to the ground. The earth attracts it. It stays on the
wires unless a person, a wet branch, or some other conductor gives it a
path to the ground. Do not touch any wire which might be carrying
electricity.
Play It Safe
If you should touch a "hot" wire accidentally and are standing on a dry
piece of wood, the conducting pathway to the ground is not good and the
electricity may keep running along its wire. But do not touch some other
conductor with another part of your body. This would complete a circuit
through your body and would be very dangerous. Always make sure there is
plenty of good insulation material or plenty of distance between you and
anything which might be carrying electricity.
Remember, too, insulation is of little use when it is wet. Dew, mist,
rain, condensation, a damp floor can change the whole picture. If you
understand electricity and how it acts, you'll be safe enough, because
you won't take chances or expose yourself to injury.
Electrical Terms
_Alternating Current_--Usually referred to as "AC," alternating current
is current which reverses its direction of flow at regular intervals, 60
times a second.
_Direct Current_--"DC" current flows only in one direction. Battery
current is DC.
_Ampere_--Amperes are units by which the rate of flow of electrical
current (electrons) is measured. An ampere is 6.3 billion electrons
passing one point in a circuit, in one second. This compares with the
way the flow of water is measured in gallons per second.
_Volts_--A volt is a unit to measure the tendency of electrons to move
when they are shoved. Voltage is the amount of "push" behind the
electrons. It's like water pressure in a pipe. Home power lines carry
115 volts (110 to 120 volts). For appliances such as electric stoves,
washers and driers, a second 115-volt line should be added, giving 230
volts (220 to 240 volts).
_Watts_--Watts equal volts times amperes. Light bulbs, electric irons
and other appliances are usually marked with the voltage they require
and the number of watts.
Public-domain text, read in full here on John Shaqi.
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