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Frank Znidarsic rearranged Coulomb's constants into the form of the elastic energy of a spring. together they equal a group constant K. The variable 1/r remains the same. The strength of the electric field varies with distance r away from the electron and this is reflected in this variable elastic constant. The speed of sound also varies at different locations within the electron.

The condition of the velocity of light was set equal to the condition produced by the velocity of sound within the nuclear and thus, electronic structure. The velocity of a wave in medium is determined by the stiffness of that medium. The greater the strength of the forces within the medium, the faster the wave propagates. This is why sound travels faster in steel than in water. In the case where all the waves are going at the same velocity the strength of the forces between the components is the same. This implies that the strength of the electromagnetic, gravitomagentic, and nuclear forces converge under this condition.

This discovery has important technical ramifications. It shows the conditions necessary to control the natural forces. As in, controlling Gravity and Nuclear Forces. This idea does not end in the clouds, however, it can also be used to produce the structure of the hydrogen atom (in equation #12.) This has never been done before from a classical premise.

Not only that, but the structure was extended to produced the intensity of spectral emission. Frank suggests that the natural force fields are pinned into the structure of matter at this discontinuity. The transitional quantum state removes the discontinuity and releases the fields.

The Transitional Quantum State It consists of a vibrating Bose condensate. The vibration of a Bose condensate at this dimensional frequency of 1.094 megahertz-meters appears to increase the strength of the phonons that bind the condensate. This increased strength invites nuclear participation. Superconductors and proton conductors can be externally vibrated to harness the effect. This new understanding of the process of the quantum transition may allow a multi-bodied macroscopic object to be placed into a state of quantum transition. Trillions of atoms may be enjoined within a single state of quantum transition. Strong gravitational and long-range nuclear effects will be produced. The long-range nuclear effects may be used for the production of energy and the reduction of nuclear waste. The strong gravitational effects may be used for propulsion.

Part 1 | Part 2 | Part 3 | Part 4

 

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