Academic literature on the topic 'Non-Stationary Cosmic Gravitation'

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Journal articles on the topic "Non-Stationary Cosmic Gravitation"

1

Dr., Sergey V. Simonenko. "THE PREDICTION OF THE THERMOHYDROGRAVIDYNAMIC THEORY CONCERNING THE STRONGEST INTENSIFICATIONS OF THE GLOBAL NATURAL PROCESSES OF THE EARTH SINCE 18 JULY, 2017 AND BEFORE 26 FEBRUARY, 2018." International Journal of Research - Granthaalayah 5, no. 8 (2017): 127–45. https://doi.org/10.5281/zenodo.885023.

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The article presents (on 21 August, 2017) the prediction of the established global prediction thermohydrogravidynamic principle (of the developed thermohydrogravidynamic theory containing the cosmic geophysics and the cosmic seismology based on the author’s generalization of the first law of thermodynamics for non-stationary cosmic gravitation) concerning the strongest intensifications (since 18 July, 2017 and before 26 February, 2018) of the global seismotectonic, volcanic, climatic and magnetic processes of the Earth determined by the maximal (near 7 November, 2017) combined integral energy
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2

Simonenko, Sergey V. "THE PREDICTION OF THE THERMOHYDROGRAVIDYNAMIC THEORY CONCERNING THE STRONGEST INTENSIFICATIONS OF THE GLOBAL NATURAL PROCESSES OF THE EARTH SINCE 18 JULY, 2017 AND BEFORE 26 FEBRUARY, 2018." International Journal of Research -GRANTHAALAYAH 5, no. 8 (2017): 127–45. http://dx.doi.org/10.29121/granthaalayah.v5.i8.2017.2199.

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Abstract:
The article presents (on 21 August, 2017) the prediction of the established global prediction thermohydrogravidynamic principle (of the developed thermohydrogravidynamic theory containing the cosmic geophysics and the cosmic seismology based on the author’s generalization of the first law of thermodynamics for non-stationary cosmic gravitation) concerning the strongest intensifications (since 18 July, 2017 and before 26 February, 2018) of the global seismotectonic, volcanic, climatic and magnetic processes of the Earth determined by the maximal (near 7 November, 2017) combined integral energy
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3

Dr., Sergey V. Simonenko. "THE PREDICTION OF THE THERMOHYDROGRAVIDYNAMIC THEORY CONCERNING THE FIRST SUBRANGE IN 2018 OF THE STRONGEST INTENSIFICATIONS OF THE GLOBAL NATURAL PROCESSES SINCE 26 FEBRUARY AND BEFORE 24 AUGUST, 2018." International Journal of Research - Granthaalayah 6, no. 2 (2018): 346–65. https://doi.org/10.5281/zenodo.1199171.

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The article presents (on 28 February, 2017) the prediction (made on 25 February, 2018) of the established global prediction thermohydrogravidynamic principle (of the developed thermohydrogravidynamic theory containing the cosmic geophysics and the cosmic seismology based on the author’s generalization of the first law of thermodynamics for non-stationary cosmic gravitation of the Solar System and our Galaxy) concerning the first subrange (in 2018) of the strongest intensifications (since 26 February and before 24 August, 2018) of the global seismotectonic, volcanic, climatic and magnetic
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4

Simonenko, Sergey V. "THE PREDICTION OF THE THERMOHYDROGRAVIDYNAMIC THEORY CONCERNING THE FIRST SUBRANGE IN 2018 OF THE STRONGEST INTENSIFICATIONS OF THE GLOBAL NATURAL PROCESSES SINCE 26 FEBRUARY AND BEFORE 24 AUGUST, 2018." International Journal of Research -GRANTHAALAYAH 6, no. 2 (2018): 346–65. http://dx.doi.org/10.29121/granthaalayah.v6.i2.2018.1581.

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Abstract:
The article presents (on 28 February, 2017) the prediction (made on 25 February, 2018) of the established global prediction thermohydrogravidynamic principle (of the developed thermohydrogravidynamic theory containing the cosmic geophysics and the cosmic seismology based on the author’s generalization of the first law of thermodynamics for non-stationary cosmic gravitation of the Solar System and our Galaxy) concerning the first subrange (in 2018) of the strongest intensifications (since 26 February and before 24 August, 2018) of the global seismotectonic, volcanic, climatic and magnetic proce
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5

Dr., Sergey V. Simonenko. "THE PREDICTION OF THE THERMOHYDROGRAVIDYNAMIC THEORY CONCERNING THE STRONGEST INTENSIFICATIONS OF THE SEISMOTECTONIC AND CLIMATIC PROCESSES IN CALIFORNIA SINCE 9 AUGUST, 2017 AND BEFORE 3 MARCH, 2018." International Journal of Research - Granthaalayah 5, no. 10 (2017): 137–59. https://doi.org/10.5281/zenodo.1040246.

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The article presents (on October 12, 2017) the prediction (made on 9 August, 2017) of the established global prediction thermohydrogravidynamic principle (of the developed thermohydrogravidynamic theory based on the author’s generalization of the first law of thermodynamics for non-stationary cosmic gravitation) concerning the strongest intensifications of the seismotectonic and climatic processes in California (since 9 August, 2017 and before 3 March, 2018) determined by the maximal (near 7 November, 2017) combined integral energy gravitational influence on the internal rigid core of the Eart
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6

Simonenko, Sergey V. "THE PREDICTION OF THE THERMOHYDROGRAVIDYNAMIC THEORY CONCERNING THE STRONGEST INTENSIFICATIONS OF THE SEISMOTECTONIC AND CLIMATIC PROCESSES IN CALIFORNIA SINCE 9 AUGUST, 2017 AND BEFORE 3 MARCH, 2018." International Journal of Research -GRANTHAALAYAH 5, no. 10 (2017): 137–59. http://dx.doi.org/10.29121/granthaalayah.v5.i10.2017.2291.

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Abstract:
The article presents (on October 12, 2017) the prediction (made on 9 August, 2017) of the established global prediction thermohydrogravidynamic principle (of the developed thermohydrogravidynamic theory based on the author’s generalization of the first law of thermodynamics for non-stationary cosmic gravitation) concerning the strongest intensifications of the seismotectonic and climatic processes in California (since 9 August, 2017 and before 3 March, 2018) determined by the maximal (near 7 November, 2017) combined integral energy gravitational influence on the internal rigid core of the Eart
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7

SLAGTER, REINOUD JAN. "STATIONARY AXIALLY SYMMETRIC NON-ABELIAN ROTATING COSMIC STRINGS." International Journal of Modern Physics D 11, no. 04 (2002): 619–33. http://dx.doi.org/10.1142/s0218271802001305.

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We investigated the SU(2) Einstein–Yang–Mills system on a stationary axially symmetric nondiagonal spacetime. The equations are numerically solved. There is evidence for the existence of a regular solution with nonvanishing angular momentum, and finite energy density for all r. The behavior of the solution depends critical on the ratio of the Planck scale M pl and Yang–Mills couplings constant g, i.e., [Formula: see text]. Further, the asymptotic behavior of the solution is strongly affected by the boundary conditions of one of the YM components at z = 0. It is conjectured that the singular be
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8

VERBIN, Y., and A. L. LARSEN. "NON-SINGULAR GLOBAL COSMIC STRINGS." International Journal of Modern Physics A 20, no. 11 (2005): 2374–79. http://dx.doi.org/10.1142/s0217751x0502464x.

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Non-singular global cosmic strings are found in a non-linear sigma model with a potential term for a self-gravitating complex scalar field. Stationary solutions with angular momentum and possibly linear momentum are obtained by assuming an oscillatory dependence of the scalar field on t, φ and z. This dependence has an effect similar to gauging the global U(1) symmetry of the model, which is actually a Kaluza-Klein reduction from four to three spacetime dimensions. The method of analysis can be regarded as an extension of the gravito-electromagnetism formalism beyond the weak field limit.
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9

Simonenko, Sergey V. "The Linkage of the Different Distinct Great Volcanic Eruptions of the Thera (Santorini) in the Range (1700÷1450 ±14) BC and the Related Subsequent Intensifications of the Global Seismicity and Volcanic Activity in the End of the 19TH Century and." JOURNAL OF ADVANCES IN PHYSICS 4, no. 2 (2014): 484–516. http://dx.doi.org/10.24297/jap.v4i2.2038.

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The article presents the development of the cosmic geophysics (representing the deterministic thermohydrogravidynamic theory based on the author’s generalized differential formulation of the first law of thermodynamics) by taking into account the non-stationary energy gravitational influences on the Earth of the Sun (owing to the gravitational interaction of the Sun with the outer large planets) along with the non-stationary energy gravitational influences of the system Sun-Moon, the Venus, the Mars and the Jupiter. The author presents the evidence of the founded ranges of the fundamental
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10

ZASPA, Yurii. "ANTI-SYMMETRY AND CAVITATION TOPOLOGICAL DISRUPTIONS OF COMPLEX SPACE AND INERT MASS ON THE BASIS OF EXCIMER SYSTEMS OF QUANTUM GENERATION OF EXCHANGE INERTIAL RADIATION. MONOMER EQUILIBRIUM AND MATTER FORMATION." Herald of Khmelnytskyi National University. Technical sciences 313, no. 5 (2022): 159–67. http://dx.doi.org/10.31891/2307-5732-2022-313-5-159-167.

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The proposed mechanism of formation of inert mass, electric charge and gravitational mass through cavitational topological ruptures of complex space. Stabilization of gaps is carried out through the quantum generation of exchange inertial radiation. On the basis of the relations of non-relativistic quantum mechanics, such radiation was separated into two components: zeron radiation from the zero energy level of the quantum oscillator and heaton radiation from higher levels populated as a result of thermal excitations. Different signs of energy and temperature in two subspaces of the complex sp
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