Showing posts with label hydrogen atom. Show all posts
Showing posts with label hydrogen atom. Show all posts

Tuesday, 13 June 2023

Bohr’s Model of Hydrogen Atom: A Review | Chapter 12 | Fundamental Research and Application of Physical Science Vol. 6

 This unit has provided an alternate system of solving simple questions in atomic physics under Bohr’s model to aid good concept of hydrogen atom to physicists. Two values of fundamental physical features of an  electron in the hydrogen dot has been recognized. By limiting the orbiting electrons to a succession of circular orbits having individual radii, Bohr could give reason for the series of individual wavelengths in the emission range of hydrogen. Light, he proposed, radiated from hydrogen atoms only when an power made a change from an outer revolution to one closer to the core. These  physical characteristics (Ve = 174090.938ms-1& Pe = 1.585860888 × 10-25kgms-1) are constant in type. The aim for the review was to help the solution of difference between the Bohr’s awareness (⋋0 = 91.12nm) and the Balmer’s experimental observation (⋋0 = 91.18nm) for the diffusion spectrum of hydrogen fragment. There are two other whole δ = 7.199822 × 10-10 eVm and ζ = 1503796277m-1 that were identified in the Bohr’s equation of the hydrogen bit.The four fundamental physical limit can be applied to multi-power systems cause they are inherent traits of an electron. They can also emerge from the steady state hydrogen grain Schrodinger's equation. For a deeper understanding, these limit may be scrutinised for their determination. The study approves that current quantum nuclear models and equations commanding quantum physics should be stayed for better applications and understanding of the things as they are.

Robert Wilson,
Department of Physics, University of Cape Coast, Cape Coast, Ghana.

Please see the link here: https://stm.bookpi.org/FRAPS-V6/article/view/10838


Wednesday, 10 March 2021

Joule-Lenz Energy of Quantum Electron Transitions Compared with the Electromagnetic Emission of Energy: A Scientific Explanation | Chapter 6 | New Insights into Physical Science Vol. 13

 The electromagnetic energy of emission from a single level was compared to the Joule-Lenz dissipation energy defined for electron transitions between two neighbouring quantum levels in the hydrogen atom in the first stage. The one-electron motion conducted along an orbit in the atom is referred to by both the electric and magnetic vectors entering the Pointing vector of the electromagnetic field. The harmonic oscillator is then subjected to a similar comparison of emission rates. For the energy emission rates, formal agreement between the Joule-Lenz and electromagnetic expressions has been achieved. With the electron oscillator as a model, we were able to compare the quantum approach to emission rate with the classical electromagnetic theory in a more direct way.

Author (s) Details

Stanislaw Olszewski
Institute of Physical Chemistry, Polish Academy of Sciences Kasprzaka, Warsaw, Poland.

View Book :- https://stm.bookpi.org/NIPS-V13/issue/view/51

Wednesday, 2 September 2020

Dark Matter and Unknown Ultra-low Energy Levels of the Hydrogen Atom | Chapter 7 | New Insights into Physical Science Vol.4

 This paper discusses ultra-low energy levels of the hydrogen atom which was not predictable with

quantum mechanics. The hydrogen atom has ultra-low energy levels. The existence of electrons at
these energy levels can be demonstrated by changing the interpretation of triplet production. The
matter formed from a proton with positive mass, and an electron with negative mass that orbits near
that proton, is smaller than an ordinary hydrogen atom to an extreme degree. The radius is about
1.331×10
-5 the radius of an ordinary hydrogen atom in the 1s state.
When this unknown matter gathers in large amounts, it becomes a huge mass. This paper identifies
such matter as the true nature of dark matter, the mysterious matter that physicists are currently
searching for.

Author(s) Details

Koshun Suto
Independent Researcher, 5-24, Oote-Town, Isesaki, Japan.

View Book :-
https://bp.bookpi.org/index.php/bpi/catalog/book/238