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Buenker, Robert J. - One of the best experts on this subject based on the ideXlab platform.

  • Expressing the Units of Electricity and Magnetism Directly in the Mks System
    Journal for Foundations and Applications of Physics, 2015
    Co-Authors: Buenker, Robert J.
    Abstract:

    Since the unit of electric charge can be chosen independently of the value of the permittivity of free space ε0, it is shown that all electromagnetic quantities can also be assigned units directly in the Mks System.  For example, the unit of electric charge can be 1 J as long as ε0 has units of 1 N.  A table is given that makes a comprehensive comparison of the standard units in the Giorgi System with those in two such direct Mks schemes.  A simple procedure is also described for changing the numerical values of the units in a Systematic manner by dividing the various electromagnetic quantities into five distinct classes.  This allows one to equate the value of ε0 to 1/4π, for example, similarly as for the Gaussian System of units, while still retaining the same formulas as in the Giorgi System.

Robert J Buenker - One of the best experts on this subject based on the ideXlab platform.

  • expressing the units of electricity and magnetism directly in the Mks System
    Journal for Foundations and Applications of Physics, 2014
    Co-Authors: Robert J Buenker
    Abstract:

    Since the unit of electric charge can be chosen independently of the value of the permittivity of free space e 0 , it is shown that all electromagnetic quantities can also be assigned units directly in the Mks System. For example, the unit of electric charge can be 1 J as long as e 0 has units of 1 N. A table is given that makes a comprehensive comparison of the standard units in the Giorgi System with those in two such direct Mks schemes. A simple procedure is also described for changing the numerical values of the units in a Systematic manner by dividing the various electromagnetic quantities into five distinct classes. This allows one to equate the value of e 0 to 1/4π, for example, similarly as for the Gaussian System of units, while still retaining the same formulas as in the Giorgi System.

M Arik - One of the best experts on this subject based on the ideXlab platform.

  • a new physical constant from the ratio of the reciprocal of the rydberg constant to the planck length
    viXra, 2018
    Co-Authors: Ozan Yarman, Ricardo Gobato, Tolga Yarman, M Arik
    Abstract:

    This study presents a unique set of solutions, using empirically determined physical quantities, in achieving a novel dimensionless constant α(1/Roo )/PL from the ratio of the inverse of the Rydberg constant to the Planck length. It is henceforth shown that the Lorentz Scalar coming into play, which we dub the Parana constant, necessitates us to interpret the Gravitational constant G as being neither universal nor Lorentz Invariant. Just the same, the elementary charge in the Mks System should not by itself be considered as Lorentz Invariant, but the term e^2 / eo , including its powers, ought to be. That being the case, the “Rydberg constant” must not, according to the present undertaking, be deemed a ubiquitous magnitude either, but the ratio of its reciprocal to Planck length would, in effect, be. The Parana constant is furthermore shown to exhibit meaningfulness as the proportion of the Planck mass to the electron rest mass. Throughout our derivations, we take the oppurtunity to reveal interesting features and deliberate over them.

Askar Abdukadyrov - One of the best experts on this subject based on the ideXlab platform.

  • Fundamental Values of Length, Time, and Speed
    'World Scientific Pub Co Pte Lt', 2020
    Co-Authors: Askar Abdukadyrov
    Abstract:

    In 2018, it was shown that the electromagnetic units of the MksA System (the ampere, coulomb, ohm, volt, etc.) can be written using the base units of the Mks System: the meter (m), kilogram (kg) and second (s). In this paper, using the conversion of units, the value of the lowest speed of movement in nature is calculated. It is shown that the value of the gravitational constant is determined by the values of the speed of light in a vacuum and the elementary speed. It is obtained a new formula for the law of universal gravitation, which is completely analogous to Coulomb’s law. It is shown that the System of the fundamental units of mass, length, and time is the System of the natural units, built on the universal constants c−G−e(or c−G−ℏ and α)

Ozan Yarman - One of the best experts on this subject based on the ideXlab platform.

  • a new physical constant from the ratio of the reciprocal of the rydberg constant to the planck length
    viXra, 2018
    Co-Authors: Ozan Yarman, Ricardo Gobato, Tolga Yarman, M Arik
    Abstract:

    This study presents a unique set of solutions, using empirically determined physical quantities, in achieving a novel dimensionless constant α(1/Roo )/PL from the ratio of the inverse of the Rydberg constant to the Planck length. It is henceforth shown that the Lorentz Scalar coming into play, which we dub the Parana constant, necessitates us to interpret the Gravitational constant G as being neither universal nor Lorentz Invariant. Just the same, the elementary charge in the Mks System should not by itself be considered as Lorentz Invariant, but the term e^2 / eo , including its powers, ought to be. That being the case, the “Rydberg constant” must not, according to the present undertaking, be deemed a ubiquitous magnitude either, but the ratio of its reciprocal to Planck length would, in effect, be. The Parana constant is furthermore shown to exhibit meaningfulness as the proportion of the Planck mass to the electron rest mass. Throughout our derivations, we take the oppurtunity to reveal interesting features and deliberate over them.