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Volume 35: Pages 2-4, 2022
An explanation for hydrogen’s stability
Robert Duncana)
307 West 10th Street, Sterling, Illinois 61081, USA
The electron spin angular momentum features are revealed to be identical to those of a uniformly charged ring. The electric field for this configuration can capture the electron being accelerated toward a proton, thus explaining the stability of the hydrogen atom. In addition, the proposed atom structure describes the bonding of two hydrogen atoms, which illuminates the covalent bond formation, the electronic state, bond length, and binding energy. Additionally, important wave properties ascribed to photons are assigned to particles with mass such as wave energy, angular frequency, phase velocity, and quantum spin.
Les caractéristiques du moment de spin de l’électron se révèlent être identiques à celles d’un anneau uniformément chargé. Le champ électrique de cette configuration peut capturer l’électron qui est accéléré vers un proton, expliquant ainsi la stabilité de l’atome d’hydrogène. En outre, la structure atomique proposée peut expliquer la liaison de deux atomes d’hydrogène, ce qui éclaire la formation de la liaison covalente, l’état électronique, la longueur de la liaison et l’énergie de liaison. En outre, d’importantes propriétés ondulatoires attribuées aux photons sont attribuées aux particules de masse, telles que l’énergie ondulatoire, la fréquence angulaire, la vitesse de phase et le spin quantique.
Key words: Charged Ring; Spin Angular Momentum; Hydrogen Atom Stability; Covalent Bond; Hydrogen Molecule; Bond Energy; Virial Theorem; Wave Energy; Angular Frequency; Phase Velocity.
Received: September 21, 2021; Accepted: December 2, 2021; Published Online: December 31, 2021
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