用吉尔1964年的电磁学理论解决了"非假设"

A. S. Gill
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摘要

将吉尔1964年的磁学电子理论应用于地球,并将其与靠近地球表面的任何物体的原子的电子依赖负力(-e)和质子依赖正力(+e)联系起来,将从数学上解释靠近地球的物体如何在这两种力的结合下向地球坠落。在地球的南北磁半球,根据已知的物理定律,给出了物体落向地球的方程。点积矢量方程将解释为什么钟摆在赤道处加速度最小,而当我们把同一个钟摆从赤道移向地球磁极时,这个横向加速度一直在增加,正如实验所看到的那样。当物体O在地球表面以上的高度增加时,两种正、负的地外力量开始起作用,O开始随着高度的增加而失重。在距离地球一定高度的地方,来自地球的正负两种力与地球外的正负两种力相平衡,物体O将开始像卫星一样运行。较大的物体O将在更高的高度成为卫星。最后简短讨论了为什么这个演示比艾萨克·牛顿的万有引力定律更准确,牛顿的万有引力定律导致了1687年《物理学》中不正确的第三种力概念。由于磁力和电磁力之间的不对称性在1964年吉尔的电子磁性理论中得到了解决,阿尔伯特·爱因斯坦的“1905年狭义相对论”是为了处理不对称性问题而提出的,随着他的“1916年广义相对论”,他试图证明引力的合理性,这就变得不必要了。
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‘Hypothesis non-fingo’ resolved with ‘Gill’s Electronic Theory of Magnetism 1964’
Applying Gill’s electronic theory of magnetism 1964 to planet Earth and relating it to the electron dependant negative force (-e) and the proton dependant positive force (+e) of atoms of any object close to the surface of the Earth, it will be explained mathematically how objects close to the Earth fall towards the Earth with a combination of these two forces. In the northern and southern magnetic hemispheres of the Earth, equations based on known physics laws are offered for objects falling towards the Earth. Dot-product vector equations will explain why a pendulum will accelerate least at the equator and this lateral acceleration keeps on increasing as we move the same pendulum from the equator towards the magnetic poles of the Earth as has been seen experimentally. As the object O gains height above the surface of the Earth, the two negative and positive extra-terrestrial forces become effective and O starts losing weight with increasing height. At a certain greater height above the Earth where the two negative and positive forces from the Earth balance with the two negative and positive extra-terrestrial forces, the object O will start behaving as a satellite. The bigger object O will become a satellite at a greater height. A brief discussion at the end on why this presentation is more accurate as compared to Sir Isaac Newton’s universal law of gravitation which resulted in the incorrect third force concept of gravity in 1687 in Physics. As the asymmetry between the magnetic force and the electrical forces is resolved with Gill’s electronic theory of magnetism 1964, Albert Einstein’s ‘Special Relativity theory 1905’ which was presented to deal with the asymmetry issue becomes unnecessary along with his ‘General Relativity theory 1916’ where he tries to justify the gravitational force.
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