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Phononotron Power Unit: Difference between revisions

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(Created page with "{{headerXenoEngineering|subcat=XenoEngineering}} Category:power suppy A 3-phase 13:8 knot winding on a wooden torus by a design evolution (circa 2023) as a nuclear magnetic resonant knot winding as one half of an electrical phase circuit. Design principles require a dual output power supply, to supply 1) the adjustable intensity, static magnetic bias (flux field 'B0' per NMR jargon) upon the meta-material of the knot windings as electrical conductors, and 2...")
 
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A 3-phase 13:8 knot winding on a wooden torus by a design evolution (circa 2023) as a nuclear magnetic resonant knot winding as one half of an electrical phase circuit.
A 3-phase 13:8 knot winding on a wooden torus by a design evolution (circa 2023) as a nuclear magnetic resonant knot winding as one half of an electrical phase circuit.


Design principles require a dual output power supply, to supply 1) the adjustable intensity, static magnetic bias (flux field '[[B0]]' per NMR jargon) upon the [[meta-material of the knot windings]] as electrical conductors, and 2) an adjustable voltage source to feed the capacitive reserve of local electrical charge into the [[power studs]] of the operating quantum quantum center-point resonator, phonon-o-tron.
Te establish a nuclear magnetic resonance (continuous-wave NMR), design principles require a dual output power supply, to supply 1) the adjustable D.C. current to set the intensity of a static magnetic bias (a magnetic flux field '[[B0]]' per NMR jargon) upon the [[Field Array meta-material |meta-material of the knot windings]] as electrical conductors, and 2) an adjustable voltage source to feed the capacitive reserve of local electrical charge into the [[power studs]] of the operating quantum center-point resonator, phonon-o-tron, or comically, [[The Field Array]] —a nucleosonic resonance and control project.
 
;*Comic relief: [[:category:S100]]

Revision as of 12:11, 17 November 2023

Template:HeaderXenoEngineering

A 3-phase 13:8 knot winding on a wooden torus by a design evolution (circa 2023) as a nuclear magnetic resonant knot winding as one half of an electrical phase circuit.

Te establish a nuclear magnetic resonance (continuous-wave NMR), design principles require a dual output power supply, to supply 1) the adjustable D.C. current to set the intensity of a static magnetic bias (a magnetic flux field 'B0' per NMR jargon) upon the meta-material of the knot windings as electrical conductors, and 2) an adjustable voltage source to feed the capacitive reserve of local electrical charge into the power studs of the operating quantum center-point resonator, phonon-o-tron, or comically, The Field Array —a nucleosonic resonance and control project.