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Stan’s Legacy

Figure (6A)

Figure (6A)

How it is written

  • (6A)

Drawings 1

On this figure 1

Where it is named · 7

Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas

  1. Once triggered, the thermal explosive energy output is controllable by the attenuation of operational parameters. With reference to Figure 6A, for example, once the frequency of resonance is identified, by varying applied pulse voltage to the initial water fuel cell assemblies, 2, 3, the ultimate explosive energy output is likewise varied. …

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  2. circuit of the type shown in Figure 7 provides a pulsating, polar electric field to the gas mixture as illustrated in Figure 6A, whereby electrons of the gas atoms are distended in their orbital fields by reason of their subjection to electrical polar forces, changing from the state conceptually illustrated by Figures 6B to t …

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  3. … When a unipolar voltage pulse train such as shown in Figure 6A (53a xxx 53n) is applied, an increasing voltage potential is induced in the molecules, gases and/or ions in a linear, step-like charging effect. …

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  4. state (A) to a high energy state (J) in a step manner following each pulse-train as illustrated in Figure 6A. The increasing voltage potential is always positive in direct relationship to negative ground potential during each pulse. The voltage polarity on the plates which create the voltage fields remains constant. Positive and negative voltage "zones" are thus formed simultaneously.

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  5. … the potential difference applied causes the orientated water molecules to align themselves between the conductive plates, pulsing causes the voltage field intensity to be increased in accordance with Figure 6A. …

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  6. The repetitive application of a voltage pulse train (A through J of Figure 6A) incrementally achieves the critical state of said gas ions. As the gas atoms or ions (la xxx In) shown in Figure 6C become elongated during electron removal, electromagnetic wave energy of a predetermined frequency and intensity is injected. The wave energy absorbed by the

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  7. FIGURE 6A

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