A more advanced theoretical model of the sphere earth's EM in a foreign homogeneous EM field

Introduction/purpose: The paper describes a more advanced theoretical model of the Earth's EM field based on two-component hypotheses. A defined mathematical model that shows the rotation of the magnetically conducting sphere of Tthe magnetization M in a foreign magnetic field and the compo...

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Main Authors: Slobodan N. Bjelić, Nenad A. Marković
Format: Article
Language:English
Published: University of Defence in Belgrade 2023-04-01
Series:Vojnotehnički Glasnik
Subjects:
Online Access:https://scindeks.ceon.rs/article.aspx?artid=0042-84692302362B
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author Slobodan N. Bjelić
Nenad A. Marković
author_facet Slobodan N. Bjelić
Nenad A. Marković
author_sort Slobodan N. Bjelić
collection DOAJ
description Introduction/purpose: The paper describes a more advanced theoretical model of the Earth's EM field based on two-component hypotheses. A defined mathematical model that shows the rotation of the magnetically conducting sphere of Tthe magnetization M in a foreign magnetic field and the components of the magnetic field that may arise due to the rotation of the Earth around its axis. According to the established model, in relation to the reference values of the planet Earth, the values of the components of the other planets in the solar system were calculated and the results were tabulated. Methods: The solution to the problem highlighted in the title of the paper was determined using the combined, for that purpose, formalized methods of physics and mathematical analysis, in order to develop a new, more advanced mathematical model. For this purpose, the method of analogy was used, related to the application of similar structural forms and systems for researching electromagnetic processes and planetary rotation. The method of analogy was applied for two interrelated reasons. The first one is that all values that characterize the function of any natural system are subject to change, and the second one is that the applied solutions do not determine the conditions of the structure's function in each specific case. Results: The solutions in the form of original analytical formulas and numerical values arranged in Table 2, referring to the influence of the rotation of the planets and especially the Earth, will be applied to research the effects of the EM field emitted by the Sun towards the planets, especially the role that the process plays in protecting the planet Earth. The results given in Table 2 are particularly important. Conclusion: The paper discusses the appearance and effect of the Earth's EM field in a way that is understandable at the current level of scientific development. Scientific findings in science and measurements in geo- and astrophysics indicate the Sun as a possible source of the EM field that extends through interplanetary space and the component of the Earth's magnetic field is only a response to the influence of that source. Natural phenomena and processes on the Earth can be defined in system theory by a model that contains changes in the parameters of the state of the planet.
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spelling doaj.art-37f95b69141644fe827f954142bb977e2023-04-01T11:02:44ZengUniversity of Defence in BelgradeVojnotehnički Glasnik0042-84692217-47532023-04-0171236239110.5937/vojtehg71-42923A more advanced theoretical model of the sphere earth's EM in a foreign homogeneous EM fieldSlobodan N. Bjelić0https://orcid.org/0000-0001-5642-8936Nenad A. Marković1https://orcid.org/0000-0001-6960-1953University of Priština – Kosovska Mitrovica, Faculty of Technical Sciences, Kosovska Mitrovica, Republic of Serbia Kosovo and Metohija Academy of Applied Studies, Department Uroševac – Leposavić, Leposavić, Republic of SerbiaIntroduction/purpose: The paper describes a more advanced theoretical model of the Earth's EM field based on two-component hypotheses. A defined mathematical model that shows the rotation of the magnetically conducting sphere of Tthe magnetization M in a foreign magnetic field and the components of the magnetic field that may arise due to the rotation of the Earth around its axis. According to the established model, in relation to the reference values of the planet Earth, the values of the components of the other planets in the solar system were calculated and the results were tabulated. Methods: The solution to the problem highlighted in the title of the paper was determined using the combined, for that purpose, formalized methods of physics and mathematical analysis, in order to develop a new, more advanced mathematical model. For this purpose, the method of analogy was used, related to the application of similar structural forms and systems for researching electromagnetic processes and planetary rotation. The method of analogy was applied for two interrelated reasons. The first one is that all values that characterize the function of any natural system are subject to change, and the second one is that the applied solutions do not determine the conditions of the structure's function in each specific case. Results: The solutions in the form of original analytical formulas and numerical values arranged in Table 2, referring to the influence of the rotation of the planets and especially the Earth, will be applied to research the effects of the EM field emitted by the Sun towards the planets, especially the role that the process plays in protecting the planet Earth. The results given in Table 2 are particularly important. Conclusion: The paper discusses the appearance and effect of the Earth's EM field in a way that is understandable at the current level of scientific development. Scientific findings in science and measurements in geo- and astrophysics indicate the Sun as a possible source of the EM field that extends through interplanetary space and the component of the Earth's magnetic field is only a response to the influence of that source. Natural phenomena and processes on the Earth can be defined in system theory by a model that contains changes in the parameters of the state of the planet.https://scindeks.ceon.rs/article.aspx?artid=0042-84692302362Badvanced modeltheoryplanetsrotationmagnetismmagnetic field
spellingShingle Slobodan N. Bjelić
Nenad A. Marković
A more advanced theoretical model of the sphere earth's EM in a foreign homogeneous EM field
Vojnotehnički Glasnik
advanced model
theory
planets
rotation
magnetism
magnetic field
title A more advanced theoretical model of the sphere earth's EM in a foreign homogeneous EM field
title_full A more advanced theoretical model of the sphere earth's EM in a foreign homogeneous EM field
title_fullStr A more advanced theoretical model of the sphere earth's EM in a foreign homogeneous EM field
title_full_unstemmed A more advanced theoretical model of the sphere earth's EM in a foreign homogeneous EM field
title_short A more advanced theoretical model of the sphere earth's EM in a foreign homogeneous EM field
title_sort more advanced theoretical model of the sphere earth s em in a foreign homogeneous em field
topic advanced model
theory
planets
rotation
magnetism
magnetic field
url https://scindeks.ceon.rs/article.aspx?artid=0042-84692302362B
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