- Contents in this wiki are for entertainment purposes only
Geomagical Chirality Grouping: Difference between revisions
XenoEngineer (talk | contribs) (Created page with "Category:Field Array Category:geomagic Category:knot chirality grouping <div style=" padding:0 10px; width:880px; margin:0 auto; "> The last <font color="orange">Field Array</font> affordance, <big>'''a sorting of chirality'''</big>, creates a nest for self-harmonic excitation of nuclear magnetic resonance. A system harmony of an impulse system is self-resonant in opposing polarities. The magical sorted grouped-chirality of the Fibonac...") |
XenoEngineer (talk | contribs) No edit summary |
||
Line 6: | Line 6: | ||
The last [[The Field Array|<font color="orange">Field Array</font>]] affordance, <big>'''a sorting of chirality'''</big>, creates a nest for self-harmonic excitation of nuclear magnetic resonance. A system harmony of an impulse system is self-resonant in opposing polarities. The magical sorted grouped-chirality of the Fibonacci knot ratio affords the zero crossing of self-oscillation at the boundary between chiral sorting. | The last [[The Field Array|<font color="orange">Field Array</font>]] affordance, <big>'''a sorting of chirality'''</big>, creates a nest for self-harmonic excitation of nuclear magnetic resonance. A system harmony of an impulse system is self-resonant in opposing polarities. The magical sorted grouped-chirality of the Fibonacci knot ratio affords the zero crossing of self-oscillation at the boundary between chiral sorting. | ||
The chirality affordance makes possible a self-harmonic toroidal tangential surface density wave that is self-harmonic in opposite alternations relative it's own self-centric potentials. | The chirality affordance makes possible a self-harmonic toroidal tangential surface density wave that is self-harmonic in opposite alternations relative it's own self-centric potentials. |
Revision as of 02:20, 30 November 2023
The last Field Array affordance, a sorting of chirality, creates a nest for self-harmonic excitation of nuclear magnetic resonance. A system harmony of an impulse system is self-resonant in opposing polarities. The magical sorted grouped-chirality of the Fibonacci knot ratio affords the zero crossing of self-oscillation at the boundary between chiral sorting.
The chirality affordance makes possible a self-harmonic toroidal tangential surface density wave that is self-harmonic in opposite alternations relative it's own self-centric potentials.
This self-harmonic is the continuous standing nuclear magnetic resonant waveform with topological fit and purpose.
Group wave emergence
In nature, this self-centered harmony of the quantum lattice is hidden beneath the electron noise.