Help an idiot learn electrics...
Help an idiot learn electrics...
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VinceFox

Original Poster:

20,566 posts

201 months

Sunday 15th June 2014
quotequote all
I'm trying to get a proper, real working understanding of electrics. In small words. Like you'd explain it to a small child.

I've tried looking for a good water analogy and the best thing i can find so far is...

Voltage: amount of potential push such as the height drop from a waterfall
Current: the width of the channel or pipe water can run through

Am i even close or is this bks?

archie456

519 posts

251 months

Sunday 15th June 2014
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You're partly right.

Voltage is indeed the potential, or water pressure. The resistance is the pipe size, so the smaller the pipe the higher the resistance, and the resulting water flow is the current.

Hope this helps.

Alan

LordLoveLength

2,341 posts

159 months

Sunday 15th June 2014
quotequote all
OK on the voltage analogy. Current is the rate of flow of the water -gallons per minute sort of thing.
The diameter of the pipe would equate to resistance in the circuit. - the lower the diameter the greater the resistance.

So for a given height of water (voltage) the rate of flow (current) is determined by the diameter of the pipe it goes through (resistance) which all comes together in ohms law -remember that?

What are you trying to learn? Automotive, home or just general? There are lots of online learning resources or you could go down the batteries, bulbs, wires and switches made from drawing pins and paper clips if you want to be more hands-on.

Mave

8,217 posts

244 months

Sunday 15th June 2014
quotequote all
Kinda. Current is the amount of water going through. Resistance is the narrowness of the pipe limiting how much water goes through it.

VinceFox

Original Poster:

20,566 posts

201 months

Sunday 15th June 2014
quotequote all
Cheers for the replies. Just feel like this is something i should know. Wire quite a few things on motorbikes but by following data/instructions. Always felt like "proper" electrics is something unfathomable.

vanordinaire

3,701 posts

191 months

Sunday 15th June 2014
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Better to think of electricity as smoke rather than water. When a wire breaks or a bulb blows, you can quite often see the smoke leaking out.

TheEnd

15,370 posts

217 months

Sunday 15th June 2014
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V8Ford

2,675 posts

195 months

Sunday 15th June 2014
quotequote all
A good way to imagine it is a tap. The voltage is the water pressure from the supply. It is a force, hence the term EMF (electro motive force). The resistance is the restriction from the valve in the tap, and the current is the intensity at which the water flows from the tap (hence current being abbreviated to I for intensity).

If you have the tap wide open (low resistance) you can expect a high intensity flow.
If you close the tap a bit (higher resistance) the intensity of flow will decrease.
You can also vary the pressure/voltage to affect the flow rate.

A good practical example of this is if you were to put a wire across a car battery terminals, the wire would very quickly melt as the low resistance would cause a massive current flow (hopefully before the battery exploded).

Also worth noting that the lower the voltage, the higher the current needs to be to provide the same
power output. This is why grid lines use huge voltages - the current drawn is relatively low and means smaller conductors can be used. Take a look at 25kV railway overhead lines, the stuff originally energised at 1,500v DC has massive conductors!

VinceFox

Original Poster:

20,566 posts

201 months

Sunday 15th June 2014
quotequote all
Cheers for that. I like the I for intensity thing, that helps smile

Toaster Pilot

14,863 posts

187 months

Sunday 15th June 2014
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TheEnd said:
biggrin

V8Ford

2,675 posts

195 months

Sunday 15th June 2014
quotequote all
VinceFox said:
Cheers for that. I like the I for intensity thing, that helps smile
Happy to help smile

anonymous-user

83 months

Sunday 15th June 2014
quotequote all
Whilst you can talk about electricity in various ways that attempt to simplify the subject, really, you just need to understand the basic concepts. And to do that, you need to start with Ohms Law (V=IR) and go from there.

Tartan Pixie

2,216 posts

176 months

Sunday 15th June 2014
quotequote all
The Vindaloo Analogy

Voltage = The number of chillies
Current = The strength of chillies
Resistance = How cast iron your stomach is

Lots of voltage and current with no resistance means the st really flows.

<><><><><><><><><>

Silly analogies aside if you really want to know what is happening inside the wires then the term to google for is 'electron flow'. This BBC article has some useful graphics to help understand. - http://www.bbc.co.uk/science/robots/techlab/judder...

Electron - This can be thought of as the little spinny bit on the outside of an atom - http://www.ducksters.com/science/atom.gif

Copper Wire - Like most conducting materials, the atoms in a copper wire are arranged in a lattice structure. When you turn the ignition on in your car, what is happening is that electrons are jumping from one atom to the next along this lattice of atoms.

Current - The speed at which electrons jump along the lattice of copper atoms in a wire.

Resistance - When the electrons reach the starter motor they can not move so fast because instead of just trundling along the wire they have to do some work, ie turning the motor round.

Voltage - You've probably noticed the battery in your car has two components such as lead/acid. When charged, the lead has too many electrons and wants to get rid of them, while the acid hasn't got enough electrons and wants more of them. Voltage is the difference between how many electrons the lead wants to give off vs how many electrons the acid wants to absorb.

<><><><><><><><><>

As Max_Torque says, it's good to start with the most basic equation and work from there, however a working knowledge of the chemistry outlined above is useful for visualising a hybrid or electric car in an almost mechanical way, with electrons moving about and doing work just as pistons move about and do work in a conventional engine.

CB2152

1,555 posts

162 months

Sunday 15th June 2014
quotequote all
ash73 said:
The electrons drift very slowly along a wire, the current is transmitted via electromagnetic (zero mass) interaction which propagates at c. Maybe think of it as waves on the water, rather than the flow of water itself?
I never quite understood this in physics lessons. Electrons drift very slowly, yet when you flick a switch everything is instant. What does the electromagnetic interaction do to create a current? I know if you coil a wire you can basically make an electromagnet when the current is flowing, but I always thought that a current created electromagnetic force, not the other way round?

Sorry for thread hijack by the way...

V8 FOU

3,023 posts

176 months

Sunday 15th June 2014
quotequote all
The book I aiways recommend is the old Ladybird book for kids. Magnets, Bulbs and Batteries. Easily available after 50 years on amazon etc...

anonymous-user

83 months

Sunday 15th June 2014
quotequote all
CB2152 said:
ash73 said:
The electrons drift very slowly along a wire, the current is transmitted via electromagnetic (zero mass) interaction which propagates at c. Maybe think of it as waves on the water, rather than the flow of water itself?
I never quite understood this in physics lessons. Electrons drift very slowly, yet when you flick a switch everything is instant. What does the electromagnetic interaction do to create a current? I know if you coil a wire you can basically make an electromagnet when the current is flowing, but I always thought that a current created electromagnetic force, not the other way round?

Sorry for thread hijack by the way...
As i said, all these analogies are great if you're 3, but for anyone older, it's better to try and understand the basic physics and maths behind the science, rather than wrap it all up in another layer of abstraction imo!!


However, having said that, imagine a hollow horizontal tube completely full of snooker balls. Now push an extra ball into one end, and almost immediately, one falls out the other end, but the original ball has only moved a short distance. Keep repeating that, and eventually the orginally added ball falls out the far end.

VinceFox

Original Poster:

20,566 posts

201 months

Sunday 15th June 2014
quotequote all
V8 FOU said:
The book I aiways recommend is the old Ladybird book for kids. Magnets, Bulbs and Batteries. Easily available after 50 years on amazon etc...
That's more the sort of level i need to start with.

V8 FOU

3,023 posts

176 months

Sunday 15th June 2014
quotequote all
VinceFox said:
That's more the sort of level i need to start with.
It is a fantastic book. Lots of stuff the H&S types would gasp at! Pulling batteries apart etc. No theory, just learning by doing. It is a bit like the lectures on the telly at Christmas for kids.

www.amazon.co.uk/gp/offer-listing/072140118X/ref=s...

iloveboost

1,531 posts

191 months

Sunday 15th June 2014
quotequote all
If you want to think of electricity like pipes:
Voltage:Length
Current:Diameter
Resistance:Bends
I could be wrong.


CB2152

1,555 posts

162 months

Sunday 15th June 2014
quotequote all
Max_Torque said:
As i said, all these analogies are great if you're 3, but for anyone older, it's better to try and understand the basic physics and maths behind the science, rather than wrap it all up in another layer of abstraction imo!!


However, having said that, imagine a hollow horizontal tube completely full of snooker balls. Now push an extra ball into one end, and almost immediately, one falls out the other end, but the original ball has only moved a short distance. Keep repeating that, and eventually the orginally added ball falls out the far end.
Excellent. I pretty much get the formulae to a certain level (when I remember them) it's just things like that which used to confuse me. Hence why I did quite badly in A-level physics hehe

That makes more sense now though, thanks!