Testing whether changing electrical relationships have frequency-selective effects
Suggested slug: /frequency-dependent-enerceutial-activity/ • Parent: Experimental Evidence
Why Frequency Has Entered the Hypothesis
If Enerceutial activity depends on changing electrical-charge relationships, the timing of those changes may matter as well as their magnitude.
Candidate Systems
Frequency dependence can be investigated in conditioned fluorite, electrical or electromagnetic devices, light-based systems, ACE pigment resonance and eventually biological electrical activity.
Conditioning Versus Operating Frequency
A material may be conditioned at one frequency yet require a continuing environmental frequency to express activity. These are separate variables and should be tested separately.
Frequency Sweep
A controlled experiment should vary frequency while holding field strength, waveform, duration, geometry and temperature as constant as practical. A peaked response would be more consistent with resonance than a simple power-dependent effect.
Shielding Test
For excited fluorite, compare activity outside RF shielding, inside shielding, and inside shielding with a controlled GHz signal restored. RF attenuation should be measured rather than assumed.
Biological Extension
Gamma and other neural oscillations are established electrical phenomena, but no brain frequency has been established as a KELEA-receiving frequency. Biological frequency coupling remains an advanced hypothesis.
Observe • Measure • Compare • Replicate