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The General Relativistic Perspective

The General Relativistic Perspective
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摘要 Schwarzschild objects are not black holes. They are the brightest objects in the universe. Classical Relativity equations are simplistic as they only use values observed from an undistorted viewpoint. The general relativity distortion slows gravitons, reducing the force they exert. Hence, distortion limits escape velocity to c, similar to special relativity. The slow atomic structure of bosons and elements decays rapidly, and their energy increases the matter particle’s velocity. The lower the atomic weight, the greater the speed, which matches the EM signature of hydrogen that escapes in the most significant amount. This study shows that the distortion is always mathematically real and never imaginary. Schwarzschild objects are not black holes. They are the brightest objects in the universe. Classical Relativity equations are simplistic as they only use values observed from an undistorted viewpoint. The general relativity distortion slows gravitons, reducing the force they exert. Hence, distortion limits escape velocity to c, similar to special relativity. The slow atomic structure of bosons and elements decays rapidly, and their energy increases the matter particle’s velocity. The lower the atomic weight, the greater the speed, which matches the EM signature of hydrogen that escapes in the most significant amount. This study shows that the distortion is always mathematically real and never imaginary.
作者 David Grant Taylor David Grant Taylor(Independent Researcher, Edmonton, Canada)
机构地区 Independent Researcher
出处 《Journal of High Energy Physics, Gravitation and Cosmology》 CAS 2023年第2期506-514,共9页 高能物理(英文)
关键词 Classical Relativity General Relativity DISTORTION Classical Relativity General Relativity Distortion
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