Horace Heffner wrote:
>
> After seeing the configuration in Fig. 3 it is fairly clear that
> the vast amount of the potential drop should be across the plastic surface
> of the cell.
> the vast amount of the potential drop should be across the plastic surface
> of the cell.
> Still, the E field is present at the interface, countered by
> ion redistribution and polarized molecule orientation.
> ion redistribution and polarized molecule orientation.
>
Yes. One might do just as well by scrapping the conduction electrodes
and switching to Electrodialysis Technology:
"Over forty years ago, Ionics invented and introduced ion-exchange membranes and the Electrodialysis (ED) process which incorporates such membranes. ED is a process in which solutions are desalted or concentrated electrically. Salts in water dissociate into positively and negatively charged ions. The key to the ED process in a semi-permeable barrier which allows passage of either positively charged ions (cations) or negatively charged ions (anions) while excluding passage of ions of the opposite charge. These semi-permeable barriers are commonly known as ion-exchange, ion-selective or electrodialysis membranes"
This way one might get fields of megavolts/meter just like the cell membranes in Kervrans Chickens (or oats) that
effect biological transmutations.
Frederick

