Names of Parts on Electric Pole
waterheatertimer.org
waterheatertimer.org
I think it's interesting that a similar idea can actually be demonstrated in your own home. Because current takes all available paths in relation to their impedance, the household 'neutral', which is also connected to physical ground at multiple points, return path isn't just through the wire itself. The ground connected to your incoming water/gas/UFER will have some small amount of the current your house is using. Most will be on the triplex wire running to the transformer, but a few amps may be on those alternative grounds.
https://www.mikeholt.com/mojonewsarchive/GB-HTML/HTML/Neutra...
https://www.houzz.com/discussions/2649182/so-why-is-it-bad-t...
(Basically, and probably wrong in all the right ways, if you are using ground as neutral somewhere, you can be shocked because a breaker will NOT throw when it should, and you can be shocked to death by a neutral/return line just as easily as a hot line when it is being used.)
(This does NOT mean that your single connection to ground shouldn't be multiple ground rods, as you want that connection to be as low-impedance as possible, as it helps to ground out large surges such as lightning, etc.)
https://www.electricallicenserenewal.com/Electrical-Continui...
Mostly true, except that neutral will also be re-grounded at the service transformer.
The NEC actually requires this (or more specifically it requires it to be grounded before it gets to the building, see NEC 2020 250.24(A)(2)). This is honestly a little weird, as typically that grounding would be before the service point, and thus outside the NEC's jurisdiction. The service point cannot be before the transformer, as only instrumentation transformers are allowed on the service before the service disconnect. But in any case, the utilities code has a similar requirement.
This means that neutral current absolutely can go though the bond at the service disconnect, down into your grounding electrodes, though the earth, and out at the transformer's grounding electrode, and up to neutral wire grounding at the transformer. Which is not really ideal. As long as the neutral has not failed, it is not a huge deal, as any interruption in the path would not cause significant voltages or spikes, but instead more current would travel over lower impedance neutral service conductor. It is more of a problem if the neutral service conductor has failed.
The equipment grounding conductor (typically referred to as the 'ground') for branch circuits shouldn't touch physical ground. Unless of course the circuit is a feeder to a detached building, which needs its own ground rods.
(I think the actual motivation for the ban is that ground currents are dangerous to cattle.)