Gravity
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Absolutely everything in our universe is dual. Gravity is not an exception. There are only two different types of energy: magnetism, which is the energy inside matter (i.e., inside atoms or molecules), and heat, the energy outside matter. Gravity is, therefore, the equilibrium between magnetic and heat energies. Spherical tridimensional magnetism rules the cosmological systems—it's 100% attractive—any repulsion is converted into attraction by torque. Modern Physics claims to know it, however, where is the mathematical formalization of it? Einstein's Special and General Relativity theories are built upon Maxwell's Equations on magnetism, that are theoretical, because it only works at frozen time in constrained objects. Planets, stars and galaxies are, obviously, not suited for Einstein's Relativity. Furthermore, neither Newton nor Einstein ever took into consideration thermal attraction. This paper rescues Modern Physics, initiating the post-Einsteinian era.
宇宙中的一切事物都具有二元性,引力亦非例外。宇宙中仅存在两种截然不同的能量形式:其一为物质内部(即原子或分子内部)的磁能,其二为物质外部的热能。因此,引力便是磁能与热能之间的平衡状态。球面三维磁场所支配着宇宙天体系统——其100%表现为引力效应——任何斥力都会通过扭矩转化为引力。然而,现代物理学自诩已洞悉引力的本质,但其对应的数学形式化表述究竟何在?爱因斯坦的狭义与广义相对论均以磁学领域的麦克斯韦方程组(Maxwell's Equations)为理论基础,但该理论仅能在时间冻结的受限物体场景中成立,本质上属于理想化的理论框架。显而易见,行星、恒星与星系均无法适配爱因斯坦相对论的适用范畴。此外,牛顿与爱因斯坦二人从未考虑过热引力效应。本研究旨在挽救现代物理学的理论困境,开启后爱因斯坦时代。



