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Quantum gravitational applications of nuclear, atomic and astrophysical phenomena

机译:核,原子和天体物理学现象的量子引力应用

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By following the old concept of “gravity is having a strong coupling at nuclear scale” and considering the ‘reduced Planck’s constant’ as a characteristic quantum gravitational constant, in this letter we suggest that: 1) There exists a gravitational constant associated with strong interaction, G s ~3.328x10 28 m 3 /kg/sec 2 . 2) There also exists a gravitational constant associated with electromagnetic interaction, G e ~2.376x10 37 m 3 /kg/sec 2 .Based on these two assumptions, in a quantum gravitational approach, an attempt is made to understand the basics of final unification with various semi empirical applications like melting points of elementary particles, strong coupling constant, proton-electron mass ratio, proton-neutron stability, nuclear binding energy, neutron star’s mass and radius, Newtonian gravitational constant, Avogadro number and molar mass unit. With further research and investigation, a practical model of ‘quantum gravitational string theory’ can be developed.
机译:通过遵循“重力在核尺度上具有强耦合”这一古老概念,并将“还原的普朗克常数”视为特征性量子引力常数,在本文中我们建议:1)存在与强相互作用相关的引力常数,G s〜3.328x10 28 m 3 / kg / sec 2。 2)还有一个与电磁相互作用有关的引力常数G e〜2.376x10 37 m 3 / kg / sec 2。基于这两个假设,在量子引力方法中,试图理解最终统一的基本原理。具有各种半经验的应用,例如基本粒子的熔点,强耦合常数,质子-电子质量比,质子-中子稳定性,核键能,中子星质量和半径,牛顿引力常数,阿伏加德罗数和摩尔质量单位。通过进一步的研究和调查,可以开发出“量子引力弦理论”的实用模型。

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