Nuclear and Atomic Physics

2201 Submissions

[7] viXra:2201.0211 [pdf] submitted on 2022-01-30 18:17:14

The Periodicity of Protons in Atoms

Authors: James C. Decandole
Comments: 5 Pages.

The uniformitarian hypothesis of the microcosm is a description of nature at the smallest scale from the point of view of the center of a fundamental particle. Using the periodicity of the atomic numbers of the noble gases, the arrangement of protons in the atomic nucleus is found to be a hexagonal planar packing of spheres separated by their common tangents. The arrangement is illustrated by this alternative periodic table of elements.
Category: Nuclear and Atomic Physics

[6] viXra:2201.0206 [pdf] submitted on 2022-01-30 18:24:51

Charge and the Shape of the Proton

Authors: James C. Decandole
Comments: 5 Pages.

A model of a torus-shaped proton and a three-planed atom with a layered nucleus is derived from atomic phenomena. The model is compared to other nuclear and atomic models and its explanatory value is discussed.
Category: Nuclear and Atomic Physics

[5] viXra:2201.0147 [pdf] submitted on 2022-01-23 18:47:55

On Alzofon Experiments of Gravity Control

Authors: Lucian M Ionescu
Comments: 5 Pages.

Physicist Frederic Alzofon provided the first effective theory of gravity beyond just providing a static model, like those of Newton and Einstein. The goal was to explain how that it is possible to control gravity, as hinted by indirect evidence collected from external sources. The 1994 experiments confirmed this possibility. Recently, a theory of Gravity based on the Standard Model was also provided by the author, in and independent line of research. It sets an explicit foundation for Alzofon's Theory.
Category: Nuclear and Atomic Physics

[4] viXra:2201.0089 [pdf] submitted on 2022-01-15 19:45:42

Neutrino Discrepancies and Higgs Neutrino Oscillation Masses

Authors: Tony Bermanseder
Comments: 11 Pages. [Corrections made by viXra Admin to conform with scholarly norm]

A history of neutrino measurements is described as a reply to a published video by Sabine Hossenfelder from September 21st, 2021 https://youtu.be/p118YbxFtGg The sterile neutrino can be called a Higgs neutrino, as it derives from the Goldstone boson form of the Higgs Boson also coupled to the dark matter particle here called RMP for RestMass Photon. The problem with the Majorana form of the neutrinos is that they are indeed massless as fist proposed by the Standard Model and so are in fact their own antiparticles in the massless state. They do however assume a mass value as Dirac particles when mixing with the sterile scalar Higgs neutrinos explained by Sabine Hossenfelder in the link above. The Dirac forms for the lepton associated neutrinos can be calculated from a Grand Unification Monopole matrix. The weakons so display the bosonic nature of the original X/L bosons but allow a partitioning of the boson integral spin momentum in a sharing between the fermionic kernel and the fermionic outer ring. Weak Nuclear Interaction Nonparity CP-violation is crystallized from first quantum geometric principles.
Category: Nuclear and Atomic Physics

[3] viXra:2201.0036 [pdf] replaced on 2022-01-12 18:01:49

Gravity Control and Cold Fusion

Authors: Lucian M Ionescu
Comments: 3 Pages.

In this short note, Gravity Control is related to Cold Fusion. In recent articles it was explained the quantum origin of gravity, derived from finite gauge groups: Platonic. As a byproduct, the gravitational potential can be controlled in a similar way to temperature, via dynamic nuclear orientation of spins. It is surprising that another consequence is the possibility to reorient the spins to allow for weaker electrostatic repulsion in nuclei, with obvious applications to cold fusion.
Category: Nuclear and Atomic Physics

[2] viXra:2201.0004 [pdf] submitted on 2022-01-01 19:02:57

Hidden Properties of Meson and Baryon Masses and Widths

Authors: Boris Tatischeff
Comments: 20 Pages. 21 figures [Corrections made by viXra Admin to conform with the requirements on the Submission Form]

Regular oscillations, observed in masses and in widths in mesons and baryons, are systemically studied. The observed periods are compared and discussed. It is observed that the same fit is often able to describe different data, involving hidden properties between mesons and baryons.
Category: Nuclear and Atomic Physics

[1] viXra:2201.0001 [pdf] replaced on 2022-08-28 23:37:55

Theoretical Value for the Strong Coupling Constant

Authors: Stergios Pellis
Comments: 19 Pages. doi.org/10.2139/ssrn.399817 Published in Astrophysics,Cosmology & Gravitation eJournal Vol 1, Issue 10, June 14, 2022, Atomic & Molecular Physics eJournal Vol 1, Issue 8, June 01, 2022, Mathematical Physics eJournal Vol 1, Issue 19, June 10, 2022

In this paper we will study the strong coupling constant. The recommended theoretical value for the strong coupling constant is αs=Euler's number/Gelfond's constant. It will turn out that this value is the key that solves many problems of Physics. We will find a lot of formulas for the strong coupling constant. All these equations prove that the value of the strong coupling constant depends on the energy scale. First we will find the beautiful unity formulas that connect the strong coupling constant and the fine-structure constant. These equations are the simple unification of the strong nuclear and the electromagnetic interactions. It will be presented the mathematical formulas that connect the dimensionless physical constants with the strong coupling constant. From these equations we reached the formula of the unification of the strong nuclear,the electromagnetic and the gravitational interactions. Also we will find the formula for the Gravitational constant. Finally we will be presented the formula for the cosmological constant. This unity formula is a simple analogy between atomic physics and cosmology. All these equations are simple,elegant and symmetrical in a great physical meaning.
Category: Nuclear and Atomic Physics