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The Electromagnetic Field in the Relativistic Uniform Model

Year 2018, Volume: 4 Issue: 2, 110 - 116, 30.12.2018
https://doi.org/10.29132/ijpas.430614

Abstract



The potentials and the field strengths of the electromagnetic field, the
energies of particles and of the field are calculated for the relativistic
uniformly charged system with invariant charge density. The difference between
the relativistic approach and the classical uniform model is shown. The
conclusion is proved that in the absence of the general magnetic field the
energy of particles, associated with the scalar field potential, is twice as
large in the absolute value as the energy, determined with the help of the
tensor invariant of the electromagnetic field, which is part of the system’s
Hamiltonian.
 



References

  • Fedosin, S.G., 2012a. The radius of the proton in the self-consistent model. Hadronic Journal, 35(4):349-363.
  • Fedosin, S.G., 2012b. The Hamiltonian in covariant theory of gravitation. Advances in Natural Science, 5(4):55-75.
  • Fedosin, S.G., 2014a. The integral energy-momentum 4-vector and analysis of 4/3 problem based on the pressure field and acceleration field. American Journal of Modern Physics, 3(4):152-167.
  • Fedosin, S.G., 2014b. The procedure of finding the stress-energy tensor and equations of vector field of any form. Advanced Studies in Theoretical Physics, 8(18):771-779.
  • Fedosin, S.G., 2015. Relativistic energy and mass in the weak field limit. Jordan Journal of Physics, 8(1):1-16.
  • Fedosin, S.G., 2016a. Estimation of the physical parameters of planets and stars in the gravitational equilibrium model. Canadian Journal of Physics, 94(4):370-379.
  • Fedosin, S.G., 2016b. About the cosmological constant, acceleration field, pressure field and energy. Jordan Journal of Physics, 9(1):1-30.
  • Fedosin, S.G., 2016c. The virial theorem and the kinetic energy of particles of a macroscopic system in the general field concept. Continuum Mechanics and Thermodynamics, 29(2):361-371.
  • Feynman, R., Leighton, R., Sands, M., 1964. The Feynman lectures on physics. 2: Addison Wesley.
  • Huang, K., 1987. Statistical mechanics (2nd ed.). John Wiley and Sons. pp. 136-138.
  • Kelly, J.J., 2001. Nucleon charge and magnetization densities. arXiv:hep-ph/0111251. https://arxiv.org/abs/hep-ph/0111251
  • Yakhshiev, U., Kim, H.C., 2013. Transverse charge densities in the nucleon in nuclear matter. Physics Letters B, 726(1–3):375-381.

Göreli Uniform Modelde Elektromanyetik Alan

Year 2018, Volume: 4 Issue: 2, 110 - 116, 30.12.2018
https://doi.org/10.29132/ijpas.430614

Abstract

Elektromanyetik
alanın potansiyelleri ve alan kuvvetleri, parçacıkların ve alanın enerjileri,
değişmez yük yoğunluğuna sahip göreceli olarak uniform yüklü sistem için
hesaplanır. Rölativistik yaklaşım ile klasik uniform modeli arasındaki fark
gösterilmektedir. Sonuç olarak, genel manyetik alanın yokluğunda, skaler alan
potansiyeline bağlı parçacıkların enerjisinin, Hamiltonian sistemin bir parçası
olan elektromanyetik alanın tensör değişmezinin yardımıyla belirlenen enerji
kadar mutlak değerde iki kat daha fazla olduğu sonucuna varılmıştır.

References

  • Fedosin, S.G., 2012a. The radius of the proton in the self-consistent model. Hadronic Journal, 35(4):349-363.
  • Fedosin, S.G., 2012b. The Hamiltonian in covariant theory of gravitation. Advances in Natural Science, 5(4):55-75.
  • Fedosin, S.G., 2014a. The integral energy-momentum 4-vector and analysis of 4/3 problem based on the pressure field and acceleration field. American Journal of Modern Physics, 3(4):152-167.
  • Fedosin, S.G., 2014b. The procedure of finding the stress-energy tensor and equations of vector field of any form. Advanced Studies in Theoretical Physics, 8(18):771-779.
  • Fedosin, S.G., 2015. Relativistic energy and mass in the weak field limit. Jordan Journal of Physics, 8(1):1-16.
  • Fedosin, S.G., 2016a. Estimation of the physical parameters of planets and stars in the gravitational equilibrium model. Canadian Journal of Physics, 94(4):370-379.
  • Fedosin, S.G., 2016b. About the cosmological constant, acceleration field, pressure field and energy. Jordan Journal of Physics, 9(1):1-30.
  • Fedosin, S.G., 2016c. The virial theorem and the kinetic energy of particles of a macroscopic system in the general field concept. Continuum Mechanics and Thermodynamics, 29(2):361-371.
  • Feynman, R., Leighton, R., Sands, M., 1964. The Feynman lectures on physics. 2: Addison Wesley.
  • Huang, K., 1987. Statistical mechanics (2nd ed.). John Wiley and Sons. pp. 136-138.
  • Kelly, J.J., 2001. Nucleon charge and magnetization densities. arXiv:hep-ph/0111251. https://arxiv.org/abs/hep-ph/0111251
  • Yakhshiev, U., Kim, H.C., 2013. Transverse charge densities in the nucleon in nuclear matter. Physics Letters B, 726(1–3):375-381.
There are 12 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Articles
Authors

Sergey G. Fedosin 0000-0003-3627-2369

Publication Date December 30, 2018
Submission Date June 4, 2018
Acceptance Date November 28, 2018
Published in Issue Year 2018 Volume: 4 Issue: 2

Cite

APA Fedosin, S. G. (2018). The Electromagnetic Field in the Relativistic Uniform Model. International Journal of Pure and Applied Sciences, 4(2), 110-116. https://doi.org/10.29132/ijpas.430614
AMA Fedosin SG. The Electromagnetic Field in the Relativistic Uniform Model. International Journal of Pure and Applied Sciences. December 2018;4(2):110-116. doi:10.29132/ijpas.430614
Chicago Fedosin, Sergey G. “The Electromagnetic Field in the Relativistic Uniform Model”. International Journal of Pure and Applied Sciences 4, no. 2 (December 2018): 110-16. https://doi.org/10.29132/ijpas.430614.
EndNote Fedosin SG (December 1, 2018) The Electromagnetic Field in the Relativistic Uniform Model. International Journal of Pure and Applied Sciences 4 2 110–116.
IEEE S. G. Fedosin, “The Electromagnetic Field in the Relativistic Uniform Model”, International Journal of Pure and Applied Sciences, vol. 4, no. 2, pp. 110–116, 2018, doi: 10.29132/ijpas.430614.
ISNAD Fedosin, Sergey G. “The Electromagnetic Field in the Relativistic Uniform Model”. International Journal of Pure and Applied Sciences 4/2 (December 2018), 110-116. https://doi.org/10.29132/ijpas.430614.
JAMA Fedosin SG. The Electromagnetic Field in the Relativistic Uniform Model. International Journal of Pure and Applied Sciences. 2018;4:110–116.
MLA Fedosin, Sergey G. “The Electromagnetic Field in the Relativistic Uniform Model”. International Journal of Pure and Applied Sciences, vol. 4, no. 2, 2018, pp. 110-6, doi:10.29132/ijpas.430614.
Vancouver Fedosin SG. The Electromagnetic Field in the Relativistic Uniform Model. International Journal of Pure and Applied Sciences. 2018;4(2):110-6.

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