A 400 V DC setup is common for this sort of application, so:
667 kW / 400 V = 1667 A
How physically large do the cables and related apparatus need to be in order to deliver this sort of current? What sort of training and personal protective equipment will people need in order to plug and unplug these cables? (Hint: Arc flashes are no joke!) What sort of service would you need to order from the electric company to be able to power just one of these installations?
Of course, Washington DC could be considered one example, although the above Wikipedia link begs to differ because DC isn't a state. However, there are a few dozen more, most of which are in Virginia.
> What matters is that the American people had better believe, almost to an individual, that the process was fair and there was no cheating. That falls not just on voting matters directly but on the attempts by the media, whether old or new, to skew results, to steer people and to play psychological games with them whether through some "AI" or via in-person interference.
> You have weeks, maybe a couple of months, before the window slams shut on this opportunity. Beyond that point all you're doing is packing powder into a tinderbox with a lit fuse.
> [Jen Gennai's admission] is flat-out, without question, the most-dangerous admission I've ever seen and a very high-risk predicate for outright dirty civil war within the next 18 months. It only takes 0.1% of the American Population to decide they'd had enough of this crap and are willing to spend their life. If that happens you suddenly have three hundred thousand people committed to destruction who are utterly convinced that they are staring down tyranny and are willing to do whatever they can to stop it. They will be uncoordinated, you have no way to know who they are before they act, and once they do you can only sentence someone to death for a murder once; the facts, whether you like it or not, is that all the rest are "free, and always will be."
If you live in a subdivision built within the past couple decades, your electric runs underground, making it quite expensive to run a second or third primary phase. You also then need a three-phase transformer, which is considerably larger than a typical one-phase. Oh, and your service will be commercial/industrial, which typically comes with demand and energy charges that can be quite steep: https://www.northwesternenergy.com/docs/default-source/docum...
80 kWh / 0.8 = 100 kWh
To charge in nine minutes:
100 kWh * 60 min/hr / 9 min = 667 kW
A 400 V DC setup is common for this sort of application, so:
667 kW / 400 V = 1667 A
How physically large do the cables and related apparatus need to be in order to deliver this sort of current? What sort of training and personal protective equipment will people need in order to plug and unplug these cables? (Hint: Arc flashes are no joke!) What sort of service would you need to order from the electric company to be able to power just one of these installations?