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Electrogravimagnetics: Practical Modeling Methods of the Polarizable Vacuum - III

机译:电重力:极化真空的实用建模方法-III

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Engineering expressions are developed for experimental investigations involving coupling between electromagnetism and. gravity. It is shown that an accelerated reference frame may be derived from a superposition of applied electromagnetic (EM) fields and may be characterized by the magnitude of the Poynting vectors. Based on dimensional similarity and the equivalence principle, the engineered acceleration may be used to modify the gravitational acceleration g at the surface of Earth. An engineered change in the value of the refractive index corresponds to an incremental change in the gravitational potential energy. The magnitude of this change and the similarity between an experimental prototype (EP) and the local gravitational environment may then be characterized by a critical ratio KR such that the gravitational acceleration is reduced to zero within a bench-top test volume, when KR = 1. An engineered refractive index equation is derived that may be used for EM metric engineering purposes. A hypothetical "engineered" polarizable vacuum metric line element is then presented as an example.
机译:开发了工程表达式以用于涉及电磁与耦合的实验研究。重力。示出了,加速的参考系可以从施加的电磁(EM)场的叠加中得出,并且可以由坡印廷矢量的大小来表征。基于尺寸相似性和等效原理,工程加速度可以用于修改地球表面的重力加速度g。折光率值的工程变化对应于重力势能的增量变化。然后,可以通过临界比KR来表征这种变化的幅度以及实验原型(EP)与本地引力环境之间的相似性,以便当KR = 1时,在台式测试体积内引力加速度减小为零。推导了工程折射率方程,其可用于EM度量工程目的。作为示例,提出了一个假想的“工程化”的可极化真空度测量线元素。

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