由库仑定律导出的麦克斯韦方程与由牛顿定律导出的麦克斯韦型引力

Hui Peng
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引用次数: 0

摘要

建立了一种通用数学场论(UMFT),认为电场和速度场等矢量场的梯度和散度的共同作用产生了磁场等轴向矢量场的旋度。利用UMFT,从库仑定律与源速度的数学结合出发,推导了扩展麦克斯韦方程和洛伦兹力方程,并对新效应进行了预测。对于以非空间变化速度运动的源,将扩展麦克斯韦方程简化为麦克斯韦方程。这个推导从数学上解释了运动电荷如何产生磁场,并表明没有磁单极子电荷。牛顿定律和库仑定律之间的对偶性使我们将牛顿定律和引力源速度UMFT结合起来,推导出麦克斯韦型引力方程和洛伦兹型引力,表示为引力电磁,是电磁学的对偶。对偶的好处是电磁效应和现象可以直接转化为重力效应和现象。重力电磁学应用于研究宇宙的加速膨胀、旋转曲线、维里定理和引力辐射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maxwell Equations Derived from Coulomb’ Law vs. Maxwell-type Gravity Derived from Newton’s Law
A Universal Mathematical Field Theory (UMFT) is established and states that the combination of the operations of both gradient and divergence of vector fields, such as electric field and velocity field, create the curl of an axial vector field, such as magnetic field. Utilizing UMFT, Extended-Maxwell equations and the equation of Lorentz force are derived from the combination of Coulomb’s law and velocity of source mathematically, and new effects are predicted. For a source moving with non-spatially-varying velocity Extended-Maxwell equations reduce to Maxwell equations. This derivation mathematically explains how a moving electric charge creates magnetic field, and shows that there is no magnetic monopole charge. The duality between the Newton’s law and the Coulomb’s law leads us to derive Maxwell-type gravitational equations and Lorentz-type gravitational force by combining UMFT, the Newton’s law and velocity of gravitational source, denoted as Gravito-electromagnetic, which is dual of Electromagnetics. The benefits of the duality are that the effects and phenomena of Electromagnetics may be directly converted to that of gravity. The Gravito-Electromagnetics are employed to study the accelerating expansion of the universe, rotation curve, virial theorem, and gravitation radiation.
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