Question
How does Adam Ringham’s Alkaline Silver technique outperform standard colloidal silver methods in terms of electron field probability density?
Answer
Hi there!
When I talk about Alkaline Silver “outperforming” standard colloidal silver, I am pointing at the energy state and organization of the electron field, not just the chemical formula or ppm.
Most colloidal silver is made with whatever voltage and frequency happens to be used by the generator. That “messy” input creates ions with noisy, inconsistent electron field probability densities and rotational inertia patterns. In other words, the electron clouds are charged in a haphazard way, so the final product is less coherent and, in my view, less effective and less predictable.
With Alkaline Silver, I use a very specific voltage and frequency to imprint a more ordered, repeatable electron field probability density into the silver ions. The goal is to “tune” the electrons’ energy, frequency, and vibration so their probability clouds and rotational inertia occupy a narrower, intentional band of states instead of a random spread.
This is why I say it is made to imbue the “soul” of the atom with predetermined expressions: I am engineering the way the electron field is excited, not just the presence of silver in water.
What part of this would you like me to unpack more: the frequency side, or the quantum/electron cloud side?
