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An Addition to the Classic Gravity Interstellar Interactions

机译:经典重力星际相互作用的补充

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A composite interaction potential for a broad range of distances was proposed. It is proposed to express the interaction force as F = Mm (γ × R-2 + δ × R-1), where γ is the gravitation constant, δ = 2.7 × 10-31 m2 × kg-1 × s-2 is an additional fundamental constant. This approach allows one to keep the description of planet rotation is star systems almost unchanged, and to explain the anomalies of the motion of stars and galaxies without attracting the notions of so-called dark matter or universal acceleration. This approach is naturally built into the general physical picture of the world in which the significance of fundamental interactions changes while the size of objects changes, from elementary particles to galaxies. This picture is based on the interdependence of fundamental interactions and the size of material objects. Thus, weak and strong coupling determine the structure and properties of elementary particles and atomic nuclei. The existence of atoms, molecules, liquids and solids is due to electromagnetic coupling. Gravitational interaction promoted the formation of star systems, while the additional interaction δ promoted the formation of galaxies. It was demonstrated by means of thermodynamics that the formation of stable orbital systems with attraction forces F~Rn is possible within the range -3 ≤ n ≤ -1.
机译:提出了广泛距离的复合相互作用的潜力。建议将相互作用力表示为F = Mm(γ×R-2 +δ×R-1),其中γ为重力常数,δ= 2.7×10-31 m2×kg-1×s-2为一个附加的基本常数。这种方法可以使描述行星旋转的恒星系统几乎保持不变,并解释恒星和星系运动的异常现象而不会引起所谓的暗物质或宇宙加速的概念。这种方法自然地内置于世界的一般物理图片中,其中基本相互作用的重要性会随着对象大小(从基本粒子到星系)的变化而变化。这张图片基于基本相互作用和物质对象大小的相互依存关系。因此,弱耦合和强耦合决定了基本粒子和原子核的结构和性质。原子,分子,液体和固体的存在是由于电磁耦合。引力相互作用促进了恒星系统的形成,而附加相互作用δ促进了星系的形成。通过热力学证明,在-3≤n≤-1范围内,可能形成具有吸引力F〜Rn的稳定轨道系统。

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