On John's Ferris Wheel machine, I felt like soliciting 5 tickets for a
ride and was wondering when someone was going to deliver the chairs

Anyone that doesn't see a need for these kind of circuits should just
buy stock in their local electric company and make them happy.
I saw it run at John's shop with a 1 inch clearance from the ceiling and kind
of got the general concept of how it runs. At the show, as I was standing
next to him listening to his explanation to a bunch of people that unlike me,
they actually have a lot of ee training and can speak the language.
With the steel plates behind the coils and magnets to lock in or keep the
magnetic field compressed sort of, I think it is like a mechanical version of
the MEG... IF that is essentially what it is.
John called it the re-gauging motor. That term is used from what I can see
to describe the coils or magnets that get their field compressed then then
they spring back out.
But that seems to be the most popular use of the concept of re-gauging.
However, from what I read in my limited understanding of "quantum
electrodynamics" for example, anything that can at any point reestablish
a new potential difference is re-gauging. Therefore, the SG, a bouncing ball,
rotary attraction motors, etc... that are able to "reset" themselves and
establish a new potential difference to me is literally re-gauging literally.
There is work done and the system is able to
"compress" and "re-spring" itself back out and that can happen over and
over, usually with a bit of loss but not required to lose anything but usually
will from a practical standpoint.
In any case, if it is idling with virtually no current at a few rpm (12 foot
diameter and around 250 pounds rotor), how much would it normally take
to move 250 pounds in a circle with a conventional circuit? I don't know
the answer to that but I can guarantee it will take a good number of
amps times 36 volts.
And with the 250 pound wheel moving in one direction on a startup and
instantly jerking in the opposite direction, how much power does it take
to basically instantly stop a 250 pound wheel and then get it to move in
the opposite direction - again, basically after stopping on a dime.
Anyway, I'd like to do something like this but much smaller and with a
very good weighted flywheel - I don't think the diameter is necessary
at the moment until I think it through more, which might change my mind
or not.
I'm glad John said the Barium magnets aren't necessary and those were for
a certain experiment. And even more interesting that they have a memory
effect.
My wheels are definitely turning and I'm excited to see some replication
attempts based on the understanding of what was explained and witnessed.
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