Electrical Stress
As the sources put it
Using Electrical Stress to oscillate the combustible gas atoms of water to cause Particle Oscillation as an Energy Generator is by far the most economical way to tap into Zero Point Energy—instantly releasing thermal explosive energy (gtnt) up to and beyond 2.4 million barrels of oil per gallon of water—while being environmentally safe.
Where it appears · 73
Documents 29
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A Perspective View on Water as Fuel: An Endless Source of Clean Energy
22× · introduced
…aving the capability to release energy, our universe would not exist as we know it. Using Electrical Stress to oscillate the combustible gas atoms of water to cause Particle Oscillation as an Energy Generator is by fa…
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A Technique Called "Easer"
6× · introduced
…d to applied Voltage-Sync Gate Pulse (Vgp) by which Electrical Voltage Attraction Forces (Electrical Stress) (RU-RU' - ST-ST') causes "Particle Oscillation" of the hydrogen atom (s) to emit radiant energy (Ers) (919),…
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Voltage to Amp Differential Ratio
5× · introduced
…w, set ups, causes, and applies ever increasing (rubberbanding effect) Pulsating Opposite Electrical Stress (RU-RU' - ST-ST') across Water Gap (Cp) ... encouraging "Particle Oscillation" as a "Energy Generator" by way…
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Particle Oscillation as a Energy Generator
4× · introduced
…release a certain/given type of energy. Physical Stress being subjected to and undergoing Electrical Stress is by far the most dynamic way to cause the atom to go farthest from the point of state of equilibrium withou…
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Optical Thermal Lens
3× · introduced
…ed matter (quiescent state) is stimulated into an excited state (active state) by way of "Electrical Stress", a new form of thermal-energy (Ers) release is possible beyond gas combustion stage (gtnt) by the use of WFC…
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State of Unbalance
3× · introduced
…ay in an instant of time, one needs only to expose the unstable atom to a high pulsating “Electrical stress” across the individual radioactive atom by way of opposite voltage potential, as so illustrated in (550) of F…
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Wobbling Effect
3× · introduced
…trovalent Bonding Force) (qqa’ xxx qqb’) by subjecting and exposing the unstable atom to “Electrical Stress” of opposite voltage polarity simply causes the atom to return to stable state of equilibrium (no longer radi…
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Propagating Electrical Stress
3× · introduced
…uxing" (discouraging electron arc over) across Dielectric Capacitor Gap (ER)(66/67) while Electrical Stress (ST-ST' - RU-RU') of Opposite Voltage Polarity (B+/B-) brings on Energy Priming Stage (520) of Figure (5-3) w…
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WFC Exhaust Air Reclaimer
2× · introduced
…valent Switch-Off phenomenon (550) of Figure (5-8) by restricting amp influxing to cause "Electrical Stress" across capacitor gap (Cp) (690) of Figure (7-6) but, also, elongates the electrically polarized Nitric Oxide…
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VIC Switchover Circuit
2× · introduced
…rms of "Difference of Potential" establishes the amount of work performed by the applied "Electrical Stress" to bring about molecule mass displacement of the water molecule in a liquid medium. Electrically energizing…
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Amp Inhibiting Circuit Vs Voltage Enhancement
1× · introduced
…electrical attraction force (B+) equaling negative electrical force (B-)] [herein called "Electrical Stress" (SS' = RR") as to (160) of Figure (3-26)] are always equal in electrical magnitude/electrical intensity sinc…
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Electrical Crossover Switching Circuit
1× · introduced
…le Oscillation" as a "Energy Generator" by way of "Physical Stress" undergoing pulsating "Electrical Stress" whenever pulse switching cycles (1060) is electrically activated by incoming trigger pulse frequency (1019/T…
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Atomic Energy Equilibrium
1× · introduced
…ent stimuli conditions ... example, particle oscillation as a energy generator by way of "Electrical Stress".…
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A Miniature Controllable Sun
1× · introduced
…stical energy for sound-box amplification. In reference to WFC Technology of Inventions, "Electrical Stress" propagated by "Opposite Voltage Polarity" is utilized as a "New" way to cause "Particle Oscillation" as a "E…
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Transformer Action
1× · introduced
…(628) prevents amp influxing away from Water Gap (Cp) in a similar manner ... producing "Electrical Stress" (SS' - RR') (B+/B-) across Water Gap (Cp) since both Choke-Coils (56/62) conduct voltage potential (Negative…
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Resistance (Rs)
1× · introduced
…) of Figure (7-11) Figure (590 & 57) of Figure (6-2) ... causing and allowing the applied Electrical Stress of opposite voltage polarity (ST-ST' - RU-RU') to trigger Hydrogen Fracturing Process (390) of Figure (3-42)…
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8-1 - Propagating "Resonant Action" By Voltage Tickling of State Space
5×
…tablished when the resultant gas pressure is held constant with the never-changing static electrical stress of opposite polarity of Voltage Pulse-Wave (64) of Figure (3-20) of WFC memo 422DA. Dynamic variable conditio…
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8-4 - State Space (Sp)
4×
…tate Space" being used to propagate "Voltage Tickling" of water molecule (85) undergoing "Electrical Stress" under different fluid-pressures. Whenever, Voltage Excursion Point "P" is always changing in a given space-t…
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8-5 - Energy Vectoring (Ev)
4×
…Pulse Field (Vpt) atop Voltage Pulse Burst (Vpb) ... which combined together (Vpf + Vpb) Electrical Stress (Es) variances corresponds to the Voltage Pulse Shape of each synchronized opposite Voltage Pulse Wave (583 -…
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Voltage Flexing Process
3×
…water molecule (210) of Figure (3-46) while undergoing and experiencing both physical and electrical stress, simultaneously dual unipolar voltage pulse circuit (1010) of Figure (11-1) bipolar electrically charged wate…
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Appendix B - Glossary of Applicaiton Notes
2×
…(628) prevents amp influxing away from Water Gap (Cp) in a similar manner ... producing "Electrical Stress" (SS' - RR') (B+/B-) across Water Gap (Cp) since both Choke-Coils (56/62) conducts voltage potential (Negativ…
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Inventor Stanley Meyer dies
1×
…rical energy to divide a water atom under a controlled means, creating energy through the electrical stress across the molecule. The hydrogen gas produced from the process actually is the energy that is used to drive…
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Using Water as Fuel
1×
…ithout amp influxing. Energy Pumping Action undergoing "Resonant Propagation" of opposite electrical stress oscillates the "Energy Aperture" of the combustible gas atoms to increase the atomic energy level of the comb…
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Degaussing Radioactive Material
1×
…t) of the atom. In such cases, “Ringing” the destabilized (radioactive) atom by pulsating electrical stress under atomic resonant conditions can bring about “Atomic Stabilization” of the unstable radioactive atom ...…
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The Atom Functioning as an Energy Transporter
1×
…our physical universe. “Particle Oscillation as an Energy Generator” by way of pulsating electrical stress via WFC technology of inventions demonstrates, quite aptly, on how the reformation of the water molecule with…
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In Application of Usage
1×
…of Figure (5-1) as to (510) of Figure (5-2) undergoing "Resonant Propagation" of opposite electrical stress (ST-ST'/RU-RU') oscillates the "Energy Aperture" (7a -- 7n ) of the combustible gas atoms to increase the ato…
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8-6 - VIC Voltage Sync-Pulse Circuit
1×
…e Potential) helps prevents atom displacement during "Snapping-Action" by which "Resonant Electrical Stress" of opposite electrical polarity (RU/RU' - ST/ST') is applied equally across Water Molecule (s) (85) to propa…
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Covalent Switch-Off
1×
…ected and elongated Orbital Electron Pathway (541) reaches a point where applied Opposite Electrical Stress (ST-ST'/RU-RU') (A-A’/Z-Z') is sufficient enough to cause the Gyroscopic Action (542) of Nucleus Particles (5…
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Capacitance Reactance
1×
…of Figure (5-5) ... utilizing Dynamic Voltage Potential (600) of Figure (6-3) of opposite electrical stress (SS' - 617 - RR') to cause thermal atomic agitation (90) of Figure (4-7) (kinetic heat by atomic motion) (600…
Bench findings 44
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Dynamic Voltage Potential of opposite electrical stress causes thermal atomic agitation
1×
…Process (90, Figure 5-5) utilizes Dynamic Voltage Potential (600, Figure 6-3) of opposite electrical stress (SS'-617-RR') to cause thermal atomic agitation (90, Figure 4-7), i.e. kinetic heat by atomic motion.…
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Capacitance Charging Effect prevents amp influx away from water gap, producing electrical stress
1×
…ke-Coils (56/62) conducting positive/negative voltage potential during pulsing, produces 'Electrical Stress' (SS'-RR', B+/B-) across the Water Gap.…
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Mutual inductance restricts amp in-fluxing across the dielectric capacitor gap
1×
…ng (discouraging electron arc-over) across the Dielectric Capacitor Gap (ER)(66/67) while Electrical Stress of opposite voltage polarity (B+/B-) initiates the Energy Priming Stage (520, Fig 5-3), termed 'Voltage Tickl…
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Paired coil wires have equal electrical magnitude due to equal wire lengths
1×
…e potentials (positive attraction force B+, negative attraction force B-), referred to as Electrical Stress (SS'-RR'), are always equal in electrical magnitude/intensity because the wire lengths of each coil are the s…
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Blocking Diode (52) prevents Resonant Cavity from discharging during pulse off-time
1×
…(Cp) from discharging during pulse off-time (Fig 1-4, 60 of Fig 3-22), allowing developed Electrical Stress across the Capacitor Gap (Cp) to reach the farthest point beyond the State of Equilibrium.…
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Pulsating opposite electrical stress across the Water Gap drives particle oscillation
1×
…lds with superimposed Rippling Voltage-Surfaces create a rubberbanding Pulsating Opposite Electrical Stress across the Water Gap (Cp), causing gas atom particles of the water molecule to deflect from equilibrium and s…
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Greater electrical stress yields greater thermal explosive energy release from the Resonant Water Gap
1×
The greater the Electrical Stress (RU-RU' to ST-ST') applied, the greater the amount of thermal explosive energy released from the Resonant Water Gap (Cp), as shown in Figure 4-5 and Figure 10-1.…
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Stacking additional Dual Choke Coils enhances voltage while keeping amp-surge minimal
1×
…rcuit (970, Figure 10-1), amp-surge is kept to a minimal level while Voltage Potential of Electrical Stress is enhanced, per the Voltage Performance Graph of Figure 7-14.…
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The Amp Inhibiting Circuit restricts amp flow while elevating Difference of Potential to maximize work performed
1×
…stricts/inhibits amp flow to a minimal level while elevating the Difference of Potential (electrical stress) to the highest possible level, since greater Difference of Potential performs greater work.…
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Energy Pumping Stage (520) uses opposite voltage potentials to produce pulsating Electrical Stress waveform
1×
…applied Opposite Voltage Potential (Va xxx Vn) (49a xxx 49n) (B+/B-) produces a pulsating Electrical Stress Wave-form (opposite electrical attraction force) during Pulsing Operations.…
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Static Electrical Charging Effect set up by simultaneous opposite-side Electrical Stress waveform on hydrogen atoms
1×
The Static Electrical Charging Effect (585) is set up when an applied Electrical Stress Wave-form (RD/RD' - ST/ST') is simultaneously applied on opposite sides of the hydrogen atoms, propagating 'Particle Oscillation'…
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Opposing voltage pulses elongate hydrogen atom via electrical stress
1×
…attracts the positive charged proton, causing the hydrogen atom to elongate under Atomic Electrical Stress (Aes).…
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Greater electrical stress force per negative gate pulse increases Flex-Density
1×
The greater the electrical stress force per negative Voltage Gate-Pulse applied, the greater the amount of Flex-Density of electromagnetic radiant energy produced per cm3.…
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Process of stimulated emission from hydrogen atoms via electrical stress is termed 'Easer'
1×
…n of electromagnetic radiation from the hydrogen atom (or other atoms) produced by way of Electrical Stress is termed 'Easer'.…
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WFC Steam Resonator incorporates the VIC Switchover Circuit to cause Particle Oscillation
1×
The Voltage Flexing Process, which deflects the water molecule under physical and electrical stress to emit thermal heat energy, is implemented via the WFC Steam Resonator technology, which incorporates the use of the…
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Electrical stress from opposite voltage polarity is energy-economical because amp influx is prohibited
1×
Electrical stress brought on by opposite voltage polarity in an electronic circuit is economical since the applied voltage fields propagating opposite electrical attraction forces between the bipolar water molecule an…
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Physical + electrical stress on the atom is the most dynamic way to flex it without decay
1×
Physical stress combined with electrical stress is described as the most dynamic way to cause an atom to move farthest from its point of equilibrium without atomic decay, forming the basis of the Voltage Flexing Proce…
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Combined electrical attraction and repelling forces cause water molecule collisions releasing thermal heat
1×
…e atoms to release thermal heat energy via physical impact from particles colliding under electrical stress, which drives electron bounce that oscillates the energy aperture of each water molecule atom.…
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Dual unipolar voltage pulse circuit deflects the bipolar water molecule
1×
…ar electrically charged water molecule (Figure 3-46) while it undergoes both physical and electrical stress simultaneously.…
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Alternately switched stationary voltage fields superimpose stress forces causing physical flexing
1×
…(952/E13–953/E14 or 954/E15–956/E16) alternately switch over periodically, superimposing electrical stress forces (S-S' and R-R') onto the water molecule atom's energy spectrum, causing physical flexing (Figure 11-5,…
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Repetitive polarity switching causes particle oscillation acting as an energy generator via physical/electrical stress
1×
…ion' functioning as an 'Energy Generator' through 'Physical Stress' undergoing pulsating 'Electrical Stress' whenever pulse switching cycles (1060) are activated by incoming trigger pulse frequency (1019/T4a...1019/T4…
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VIC pulsing tunes to gas dielectric properties to trigger Covalent Switch-Off
1×
…, activating Covalent Switch-Off phenomenon (550) by restricting amperage influx, causing Electrical Stress across the capacitor gap (Cp) (690).…
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Atomic deflection preserves atoms without destruction/creation via Electrovalent Switch-off
1×
…created during exposure to voltage pulse-stimulation (E11/E12...49a xxx 49n) propagating Electrical Stress pulse-waves, inducing the Electrovalent Switch-off phenomenon (550).…
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VIC used for Atomic Degaussing via pulsating electrical stress
1×
…ifier Circuit, as defined in WFC memo 426 'VIC Matrix Circuit,' applies a high pulsating 'Electrical stress' across an unstable radioactive atom via opposite voltage potential (illustrated at 550, Figure 5-8) to insta…
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Applied electrical stress attenuates atomic electric field strength (qq')
1×
The applied pulsating electrical stress physically 'rings' the unstable atom, attenuating the electric field strength (qq') — termed electrical attenuation Aqq' — as detailed in WFC Memo 424 'Atomic Energy Balance of…
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Reference to WFC Memo 426: VIC Matrix Circuit
1×
…' defines the Voltage Intensifier Circuit configuration referenced for applying pulsating electrical stress to atoms as shown in Figure 5-8, item 550.…
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Paired coil wires have equal opposite voltage potential termed 'Electrical Stress'
1×
…(positive electrical attraction force B+ equaling negative electrical force B-), called 'Electrical Stress' (SS' = RR'), are always equal in electrical magnitude/intensity because the wire-length of each coil is the…
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Applied voltage potential is not consumed during pulsing operation
1×
…g pulsing operations is not consumed in an electronic circuit, framing the WFC process as electrical stress rather than current-consuming.…
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External electrical attraction force alone dissociates the water molecule
1×
…water molecule is described as all that is required to dissociate the water molecule via 'Electrical Stress' from opposite voltage fields.…
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Paired coil voltage potentials are equal since wire lengths are equal
1×
…positive electrical attraction force B+ = negative electrical attraction force B-, called Electrical Stress SS'=RR' as to (160) of Figure 3-26) are always equal in electrical magnitude/intensity since the wire-length…
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Choke-Coil magnetic field impedes electron flow to create negative voltage potential at Water Gap
1×
…e-Coils (56/62) conduct voltage potential (positive or negative) during pulsing to create Electrical Stress across the Water Gap.…
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High voltage distorts electron orbitals to break covalent bonds
1×
…anging the electron orbital path from a circle to an ellipse; combined with pulsing, this electrical stress breaks the covalent bonds between hydrogen and oxygen atoms, separating the gases.…
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Static State Space condition defined by constant gas pressure with unchanging opposite-polarity voltage pulse-wave
1×
…iable condition is established when the resultant gas pressure is held constant while the electrical stress of opposite polarity Voltage Pulse-Wave (64), shown in Figure 3-20 of WFC memo 422DA, never changes.…
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Dynamic State Space condition defined by simultaneously changing voltage stress and gas pressure
1×
Dynamic variable conditions exist when both the applied electrical stress of opposite polarity and the gas pressure are continually changing within a preset time frame.…
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Combinatorial variable condition: constant gas pressure with changing opposite-polarity electrical stress
1×
…e Space function in which a constant static gas pressure is subjected to an ever-changing electrical stress of opposite polarity, denoted RR'-SS'.…
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Differential dynamic variable condition: changing electrical stress combined with decreasing gas pressure
1×
A Differential dynamic variable condition of State Space occurs when a changing dynamic electrical stress of opposite polarity (RR'-SS') encounters a negative (decreasing) dynamic gas pressure.…
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'Resonant Action' defined as voltage tickling of State Space under resonant electrical stress without amperage, tuned to water's dielectric properties
1×
Voltage Tickling of State Space under 'Resonant Electrical Stress,' performed without amperage (current) influx while tuning-in to the dielectric properties of water, is referred to in the WFC Tech-manual as 'Resonant…
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Four-stage sequence for water dissociation via Dynamic Voltage Potential Wave-form
1×
…Liquid to Gas Ionization Stage (ejecting electrons from atomic structure under divergent electrical stress); and Thermal Gas Triggering Stage (igniting electrically stressed combustible gas atoms farthest from electr…
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'Resonant Action' is voltage tickling of State Space via resonant electrical stress without current draw, tuned to water's dielectric properties
1×
Voltage Tickling of State Space under 'Resonant Electrical Stress' without amp (current) influxing, while tuning-in to the dielectric properties of water, is referred to as 'Resonant Action,' illustrated relative to t…
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Balanced phasing prevents atom displacement during Snapping-Action on water molecules
1×
…ge Potential) helps prevent atom displacement during 'Snapping-Action', by which Resonant Electrical Stress of opposite electrical polarity (RU/RU' - ST/ST') is applied equally across water molecules to propagate Stat…
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Energy Pumping Action uses Resonant Propagation of opposite electrical stress to raise gas atomic energy
1×
Energy Pumping Action undergoing Resonant Propagation of opposite electrical stress oscillates the Energy Aperture of the combustible gas atoms to increase their atomic energy level prior to gas ignition.…
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Energy Pumping Action uses resonant propagation of opposite electrical stress to raise gas atomic energy before ignition
1×
Energy Pumping Action (500), via 'Resonant Propagation' of opposite electrical stress (ST-ST'/RU-RU'), oscillates the 'Energy Aperture' (7a–7n) of combustible gas atoms to increase their atomic energy level (graph 610…
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Covalent Switch-Off is triggered by opposite electrical stress deflecting orbital electron pathway
1×
…e deflected and elongated Orbital Electron Pathway reaches a point where applied Opposite Electrical Stress (ST-ST'/RU-RU', A-A'/Z-Z') is sufficient to cause the Gyroscopic Action of Nucleus Particles to be reduced in…
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Opposite-polarity electrical stress triggers instantaneous Hydrogen Fracturing Process
1×
Applied Electrical Stress of opposite voltage polarity (ST-ST' to RU-RU') triggers the Hydrogen Fracturing Process (390 of Figure 3-42) in an instant of time, releasing thermal explosive energy (gtnt, 16 of Figure 4-5…