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ROLE OF AVOGADRO NUMBER IN GRAND UNIFICATION

机译:AVOGADRO号码在大联盟中的作用

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'N' being the Avogadro number it is suggested that strong nuclear gravitational constant (G_s) is N~2 times the classical gravitational constant (G_c),(G_s) plays a vital role in strong interaction and nuclear space-time curvature. This new subject can be termed as 'strong nuclear gravity'. Based on strong nuclear gravity and super symmetry it is noticed that h is a secondary physical constant. Previously proposed 2 strong interaction fermions rest masses revised to 105.3226825 MeV and 11460.81321 MeV. Previously proposed super symmetry fermion-boson mass ratio is revised to 2.262218404. Nuclear charge radius, mole radius and gram mole are discussed. Charged lepton rest masses fitted accurately. New heavy charged lepton is predicted at 42262 MeV. Up and down quark mass ratio is equal to sin θW. Quark masses, QCD scale, nucleons rest masses, strong coupling constant, Fermi's weak coupling constant and semi empirical mass formula energy constants are fitted. It can be suggested that top quark boson and electroweak W~± charged boson both are same. Z~0 boson constitutes 2 oppositely charged higg's bosons or it constitutes one W~± and gluonic form of charged higg's boson. Third alternative is that the new heavy charged lepton pair transforms into a pair of neutral boson having a neutral mass 2 (42262/2.262) ≌ 37.364 GeV and makes the Z~0 with sm θ_w cos θ_w as usual. Finally it can be suggested that nuclear and particle physics can be studied in the view of 'strong nuclear gravity' and super symmetry.
机译:“ N”为阿伏伽德罗数,表明强核引力常数(G_s)是经典引力常数(G_c)的N〜2倍,(G_s)在强相互作用和核时空曲率中起着至关重要的作用。这个新主题可以称为“强核引力”。基于强核引力和超对称性,注意到h是次要物理常数。先前提出的2个强相互作用费米子静止质量修订为105.3226825 MeV和11460.81321 MeV。先前提出的超对称费米子-玻色子质量比修改为2.262218404。讨论了核电荷半径,摩尔半径和克摩尔数。带电的轻子静止质量正确地安装。预计新的重电荷轻子为42262 MeV。上下夸克质量比等于sinθW。拟合了夸克质量,QCD尺度,核子静止质量,强耦合常数,费米的弱耦合常数和半经验质量公式能量常数。可以认为顶夸克玻色子和电弱的W〜±带电玻色子都是相同的。 Z〜0玻色子构成2个带相反电荷的希格玻色子,或构成1个W〜±和胶态形式的带电希格的玻色子。第三种选择是,新的重电荷轻子对转变为一对具有中性质量2(42262 / 2.262)≌37.364 GeV的中性玻色子,并照常使z〜0带有smθ_wcosθ_w。最后可以建议,可以从“强核引力”和超对称性的角度研究核物理和粒子物理。

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