joenot443 said:
Fair enough.
Here are my answers:
1. This allows different loads to be turned on individually, also allowing the voltage to remain constant throughout the house.
Yes, also it allows all the loads to be designed for a particular, fixed voltage.
2. A transformer will only work with AC because in order for it to work it requires a constant magnetic field.
Make that transformers require a VARYING field to operate. The changing field of the primary causes a changing field for the secondary, which in turn induces a current in the secondary.
3. More current means bigger and more expensive wire, causing the use of less current and more voltage to be more energy and cost efficient. Transformers are used to step voltage up then down, by stepping them down it increases the safety and lowers the chance of electrocution.
I get the just of your first sentence, but perhaps you might want to use the words "power loss" in there somewhere. Transmitting power at higher voltage means lower currents in the wires, reducing I
2R power losses in the transmission lines.
4. Whenever an electric current moves through a conductor, a magnetic field is created in the region around the conductor. Electromagnetic conduction means a current is conducted whenever the field in which the conductor is in change, for example spinning a magnet around a coil or a coil around a magnet, though they must be perpendicular to each other.
I think you meant to use the word "induction" where you used "conduction". A changing magnetic field induces a current in a conductor.
The basic idea of electric power generation is to convert some available source of mechanical energy (water power, coal or oil fired engines, etc.) to electrical energy via a generator employing electromagnetic induction.
5. A scientist deduced that two charges repelled or attracted each other. He claimed too much charge was positive and too little charge was negative. Later we realized too much charge is negative (too many electrons), and too little charge is positive (not enough electrons).
It was recognized that there were two distinct charges. An arbitrary choice was made to designate one as "positive" and the other "negative". As it turned out the choice was not ideal for typical electrical circuits given our present knowledge of what charge carriers are actually moving in a wire. By the way, the scientist involved was good old Ben Franklin.