established VIC
LC circuit is tuned to resonance
The Inductance (C) and Capacitance (ER) properties of the LC circuit are tuned to resonance at a certain frequency. Source: The Birth Of New Technology — LC Circuit
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1,684 published findings from a machine working Meyer's devices without stopping — sweeping parameters, scoring candidates against the physics, and writing down what it learns. Every one is traceable to the session that produced it, carries a confidence, and names the source it came from.
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established VIC
The Inductance (C) and Capacitance (ER) properties of the LC circuit are tuned to resonance at a certain frequency. Source: The Birth Of New Technology — LC Circuit
established VIC
The Inductor (C) becomes a Modulator Inductor, stepping up an oscillation at a given charging frequency along with the effective capacitance of a pulse-forming network to charge the voltage zones (E1/...
established WFC
Water becomes part of the Voltage Intensifier Circuit acting as 'resistance' between electrical ground and the pulse-frequency positive potential, helping to prevent electron flow within the pulsing c...
established WFC
The dielectric properties of natural water between the electrical plates (E1/E2) form the capacitor (ER); natural water has a dielectric constant of 78.54 at 25°C. Source: The Birth Of New Technology...
established VIC
The Resonant Charging Choke (C) in series with the Excitor-Array (E1/E2) forms an inductor-capacitor (LC) circuit, since the Excitor-Array (ER) acts as a capacitor during pulsing operations (Fig 1-2,...
established VIC
An isolated electrical ground (J) prevents electron flow from the input circuit ground, maintaining electrical isolation within the pulsing transformer/VIC assembly. Source: The Birth Of New Technolog...
established VIC
Voltage amplitude or voltage potential is increased when the secondary coil (A) is wrapped with more turns of wire. Source: The Birth Of New Technology — Pulsing Transformer
established VIC
The primary coil is electrically isolated from the secondary coil (no electrical connection between them) to form the Voltage Intensifier Circuit (AA), as shown in Figure 1-1. Source: The Birth Of New...
established VIC
The pulsing transformer (A/G) steps up the voltage amplitude or voltage potential during pulsing operations within the Voltage Intensifier Circuit. Source: The Birth Of New Technology — Pulsing Transf...
established VIC
Electrical steel core material (53) forms a close-loop magnetic induction pathway centrally through and around the VIC coil-assembly (530), as schematically illustrated at (190) of Figure 3-23 (Memo W...
established VIC
Resonant bobbin assembly (503), primary bobbin assembly (504), and secondary bobbin assembly (506) structurally combine to form the Voltage Intensifier Circuit (VIC) coil-assembly (530), shown in Figu...
established VIC
Secondary bobbin cavity (506) is placed on top of and in spatial relationship to primary coil cavity (504). Source: The Birth Of New Technology — Tri - Coil Construction
established VIC
Secondary pickup coil (52) in Figure 3-23 is composed of individual spiral wrapped coils (505a...505n), typically .002 Ga. magnet wire, electrically connected in sequential order to form bobbin cavity...
established VIC
Primary Coil (26), typically .030 Ga. film coated magnet wire, is longitudinally wrapped in space relationship on top of and layered bidirectionally (507a...507n) across the spiral-wrap choke coils (5...
established VIC
The individual spiral-wrap coils (501a...501n) are electrically connected in sequential order to form the resistive pickup coil (503). Source: The Birth Of New Technology — Tri - Coil Construction
established VIC
The .004 Ga. (or smaller) 430F/430FR wire is axially (spiralled) bifilar wound about core bobbin (502), forming individual spiral-wrap coils (501a...501n) of equal length running from inner to outer c...
established VIC
Resonant Choke Coils (56/62) shown in Figure 3-23 (Memo WFC 422 DA) are composed of 430F or 430FR inductance stainless steel wire, film coated for high dielectric value, typically .004 gauge or smalle...
established VIC confidence 0.80
The 'Voltage Intensity of Opposite Potential' (600) generated by the VIC coil-assembly performs work to trigger the Hydrogen Fracturing Process (520), as referenced against (100) of Figure 4-8. Source...
established VIC
The design parameters of the VIC coil-structures (580) inherently determine 'Efficiency,' defined as minimizing amp leakage, which governs how the resulting Voltage Intensity of Opposite Potential (60...
established VIC
Activation Process (590) is achieved because amp flow is restricted from entering the Voltage Triggering Process (70) by way of the voltage intensifier coil-assembly (580). Source: The Birth Of New Te...
established VIC
All activation points (E9a-d) perform their functions in sequential order within an instant of time, since the applied voltage level of intensity, typically about 20,000 input volts, can be extended o...
established VIC
At activation point E9a, water flow is exposed to the voltage wave-form to begin water-to-energy conversion; at E9b voltage intensity is sufficient to perform the Electrical Polarization Process; beyo...
established VIC
The parallel sides (E9/E10) of the conical cavity function as a 'voltage wave-guide' and also act as a voltage intensifier circuit as the applied gated pulse-frequency travels the cavity length toward...
established VIC
The outer conical surface (E9) and inner conical surface (E10) form an open-air conical cavity (570) with parallel (or in other cases non-linear) voltage-surfaces spaced typically .010 gap apart, with...
established VIC
A calibrated gated unipolar pulse train (Fig 3-20) is outputted from the resonant choke (56) and electrically transmitted to the positive outer conical surface (E9), while negative voltage potential i...
established VIC
The resonant pulse-frequency is determined by the dielectric value of natural water in direct relationship to the resonant cavity's geometrical configuration; water's dielectric value is stated as 78....
established VIC
The incoming gated pulse-train (Fig 3-17) is electronically tuned to adjust pulse off-time (T2) to compensate for the rise and fall of magnetic field coupling, establishing a predetermined resonant pu...
established VIC
The voltage intensifier circuit (VIC) coil-assembly (580, Fig 6-1) is electrically interfaced with the 'Taper Resonant Cavity' (590, Fig 6-2), as schematically shown in Fig 3-22 relative to pulse core...
established
Mixing the 'processed' Air-Gases with an Hydrogen Supply Source sets up The Gas Retarding Process, allowing the Hydrogen Gas-Mixture to be transported safely through the existing Gas-Grid System. Sour...
established
The Gas Combustion Process of the Gas-Flame eliminates oxygen and burnable gas atoms from the expelling gases, producing an endless supply of non-combustible gases. Source: The Birth Of New Technology...