GLOBAL EINSTEIN -AND- VAN CONG RELATIONS, AND NEW ELECRICAL THERMOELECTRIC LAWS IN N(P)-TYPE DEGENERATE, COMPENSATED AND VISCOUS Mg-ALKALI METAL, ENHANCED BY OUR STATIC DIELECTRIC CONSTANT LAW, CONDUCTIVITY MODEL, AND ESPECIALLY ACCURATE FERMI ENERGY

In degenerate, compensated and viscous - alkali metal (Mg-AM), the Global Einstein -and- Van Cong relations, as those given in Equations (25, 32), and electrical thermoelectric laws, enhanced by: our static dielectric constant law given in Equations (5, 6), our electrical conductivity model in Eq. (19), and especially our accurate Fermi energy expression in Eq. (17), are now investigated, by basing on the same physical model and the mathematical treatment method, as those used in our recent works.[1,5] Their numerical results are obtained and given in next Tables in Appendix 1, suggesting an equivalence between degeneracy-and-viscosity concept, given in this Mg-AM. Here, the well-known “local” Einstein relation, being valid only at the lowest degeneracy and lowest viscosity, is now globalized by our “Global” Einstein -and- Van Cong relations, valid at any degeneracy and viscosity, as showed in Equations (25, 32).

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-05
DOI
https://doi.org/10.5281/zenodo.22339772
Primary Topic
Thermoelastic and Magnetoelastic Phenomena
Type
article
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article

GLOBAL EINSTEIN -AND- VAN CONG RELATIONS, AND NEW ELECRICAL THERMOELECTRIC LAWS IN N(P)-TYPE DEGENERATE, COMPENSATED AND VISCOUS Mg-ALKALI METAL, ENHANCED BY OUR STATIC DIELECTRIC CONSTANT LAW, CONDUCTIVITY MODEL, AND ESPECIALLY ACCURATE FERMI ENERGY

Prof. Dr. Huynh Van Cong*
Zenodo (CERN European Organization for Nuclear Research)
Thermoelastic and Magnetoelastic Phenomena
article

GLOBAL EINSTEIN -AND- VAN CONG RELATIONS, AND NEW ELECRICAL THERMOELECTRIC LAWS IN N(P)-TYPE DEGENERATE, COMPENSATED AND VISCOUS Mg-ALKALI METAL, ENHANCED BY OUR STATIC DIELECTRIC CONSTANT LAW, CONDUCTIVITY MODEL, AND ESPECIALLY ACCURATE FERMI ENERGY

Prof. Dr. Huynh Van Cong*
article en

Abstract

In degenerate, compensated and viscous - alkali metal (Mg-AM), the Global Einstein -and- Van Cong relations, as those given in Equations (25, 32), and electrical thermoelectric laws, enhanced by: our static dielectric constant law given in Equations (5, 6), our electrical conductivity model in Eq. (19), and especially our accurate Fermi energy expression in Eq. (17), are now investigated, by basing on the same physical model and the mathematical treatment method, as those used in our recent works.[1,5] Their numerical results are obtained and given in next Tables in Appendix 1, suggesting an equivalence between degeneracy-and-viscosity concept, given in this Mg-AM. Here, the well-known “local” Einstein relation, being valid only at the lowest degeneracy and lowest viscosity, is now globalized by our “Global” Einstein -and- Van Cong relations, valid at any degeneracy and viscosity, as showed in Equations (25, 32).

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