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On The Gravitational Shielding, Gravitational Permeability and Hidden Matter
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作者 Toir Makhsudovich Radzhabov 《International Journal of Geosciences》 CAS 2022年第7期531-546,共16页
The possibility of gravitational shielding from more massive objects than the Moon-planet Earth and the giant planets of the Solar System is considered. Within the framework of the Lesage concept, the mutual spatial s... The possibility of gravitational shielding from more massive objects than the Moon-planet Earth and the giant planets of the Solar System is considered. Within the framework of the Lesage concept, the mutual spatial shielding of mass-forming elements-atomic nuclei in ordinary matter-was evaluated. It is concluded that the size of the Moon is insufficient for tangible gravitational shielding and partial mutual shielding is about 50% for planet Earth. It is determined that there is a critical thickness of ordinary matter at which complete mutual shielding of atomic nuclei is observed. The estimated critical thickness is about d<sub>c</sub>=1.3 X 10<sup>8</sup>m, which is typical for the sizes of giant planets. It is concluded that due to the presence of gravitational shielding, not the entire mass of massive celestial bodies participates in the act of gravitational interaction, which leads to the conclusion that there is a hidden mass of massive objects and to low values in the calculation of the density of the giant planets of the Solar System. It has been established that the true mass and true density of giant planets exceed their known values by 5 times. The presence of gravitational shielding from the planet Earth leads to a revision of the physical picture of nature and the consequences of tidal forces. The idea of P. Dirac concerning the accounting of the sizes of microparticles-nucleons, expressed for the further development of the physical theory, is realized. The gravitational size of the atomic nucleus is calculated on the order of 10<sup>-</sup><sup>18</sup> m. 展开更多
关键词 Gravitational Shielding Gravitational Permeability Lesage Theory Gravity Variation Universal Gravitational Constant Semi-Daily Gravity Changes Precession of Mercury Perihelion Density of Planets
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Consideration of the Daily Variation of Gravity on the Manifestation of Gravitational Shielding
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作者 Toir Makhsudovich Radzhabov 《Journal of Geoscience and Environment Protection》 2022年第7期31-47,共17页
The result of mathematical and physical analysis of the daily change in gravity is presented. The subject of consideration was the manifestation of semi-daily factors in diurnal variations of gravity. The assumption i... The result of mathematical and physical analysis of the daily change in gravity is presented. The subject of consideration was the manifestation of semi-daily factors in diurnal variations of gravity. The assumption is investigated, according to which the cause of the half-day factors is the gravitational shielding of the planet Earth. Gravitational shielding is considered as a function of the size and thickness of celestial bodies and growing with distance from their poles. It is concluded that the planet Earth has the property of partial gravitational shielding, and the Moon does not have enough thickness to exhibit a tangible gravitational shielding. The obtained mathematical results correspond to the existing experimental data. It is suggested that gravitational shielding is the cause of the precession of the perihelion of Mercury and the peculiarities of the manifestation of tidal processes. It is assumed that gravitational shielding is one of the main reasons for the presence of hidden substances in the Universe. It is concluded that the physical picture with mutual shielding of interaction elements corresponds to the classical ideas of Fatio and Lesage. This approach is proposed as an alternative point of view to the existing theory on the description of tidal processes. It is shown that the existing basic approach to the description of tidal forces is unsatisfactory: the factors underlying the existing approaches have values 10 times less than those observed and cannot be considered as the reason for the manifestation of half-day manifestations in the daily change in gravity. The work is a continuation of the implementation by the author of P. Dirac’s ideas about accounting for the size of microparticles in physical theory. 展开更多
关键词 Gravitational Shielding Diurnal Variations of Gravity Solar Eclipse Fatio-Lesage Theory Gravity Anomalies Universal Gravitational Constant Semidiurnal Changes Precession of Mercury’s Perihelion Hidden Mass
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Theoretical Study of Anomalous Forces Externally Induced by Superconductors 被引量:2
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作者 Elio B. Porcelli Victo S. Filho 《Natural Science》 2017年第9期293-305,共13页
In this work we present a theoretical explanation for the possible anomalous forces induced by superconducting disks and toroids, based on the hypothesis of a preexisting state of generalized quantum entanglement that... In this work we present a theoretical explanation for the possible anomalous forces induced by superconducting disks and toroids, based on the hypothesis of a preexisting state of generalized quantum entanglement that can produce momentum variation exchanged between Cooper pairs and outer particles. Considering the immense amount of particles involved in the phenomenon as coherent Cooper pairs, and indications of previous studies, we use classical quantities as macroscopic observables in our calculations. We here analyzed the behavior of such superconductors and compared the experimental results early obtained in the literature with our theoretical proposal. We found that the theoretical calculations agreed with very good accuracy for two different experiments and devices. The present work really highlights the possibility of superconducting materials to be applied to induce outer forces in the environment and in external objects, as explained by our theoretical model. 展开更多
关键词 Superconducting Ceramics GRAVITATIONAL SHIELDING ANOMALOUS FORCES Quantum ENTANGLEMENT
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在重力场中质量的不同叠加度状态对于重量称量结果的影响实验
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作者 江正杰 《科技风》 2022年第22期146-148,共3页
在重力场中的同一个质量样品会因为不同的摆放状态而产生不同的叠加度,叠加度较大的竖直放置的重量称量方式比叠加度较小的平横放置的重量称量方式,应该存在一个减重值。本实验结果在概率精度范围内验证了真的存在这个减重值,并通过重... 在重力场中的同一个质量样品会因为不同的摆放状态而产生不同的叠加度,叠加度较大的竖直放置的重量称量方式比叠加度较小的平横放置的重量称量方式,应该存在一个减重值。本实验结果在概率精度范围内验证了真的存在这个减重值,并通过重复试验得出10叠加度时减重量百分率。这就证明了引力场本质是推力的理解可能是正确的,由此推测可能产生万有引力的屏蔽现象。 展开更多
关键词 叠加度 减重值 引力本质 引力场量子 引力屏蔽
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月食期间扭摆运动的观测
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作者 罗俊 李建国 《华中理工大学学报》 CSCD 北大核心 1989年第2期135-138,共4页
本文论述了利用一个通过改进的高精密扭摆对1984年11月8日至9日武汉地区半影月食的观测结果,尽管这次的测量精度比Sax1原来的精度要高近三个数量级,但没有观察到如Saxl所报道的引力异常现象。
关键词 月食 扭摆 引力异常
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Intra-Atomic Gravitational Shielding (Lensing), Nuclear Forces and Radioactivity 被引量:3
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作者 Robert A. Sizov 《Journal of Modern Physics》 2019年第1期59-73,共15页
The discovery by the author of real magnetic charges and true anti-electrons in the atomic structures allowed him to establish that the gravitational field (GF) in reality is the vortex electromagnetic field. Dependin... The discovery by the author of real magnetic charges and true anti-electrons in the atomic structures allowed him to establish that the gravitational field (GF) in reality is the vortex electromagnetic field. Depending on the vector conditions the gravitational fields can be either paragravitational (PGF) or ferrogravitational (FGF). Masses (atoms, nucleons, etc.) emitting PGF manifest so-called attraction to each other. In fact, this process is the pressing of atoms or nucleons to each other by the forces of gravitational “Dark energy”. Namely the gravitational “Dark energy” which is formed between the masses emitting PGF and compressing of nucleons in atomic nuclei is the main force factor determining the formation of nuclear forces. Masses that emit FGF are repelled from PGF sources, for example, from the Earth. The last gravitational manifestation, discovered by the author, this is of the effect of the gravitational levitation. The atomic shell and atomic nucleus are autonomous sources of gravitational field in atomic compositions. The gravitational fields emitted these sources, by its physical parameters, are different gravitational fields, what associated with differences in the magnitudes charges of magnetic and electric particles in their compositions. The noted differences in the parameters of the GF are of reason that in atoms the process of extrusion of foreign gravitational field from the region of given gravitational source is realized. This effect should be called the effect of intra-atomic gravitational shielding (IAGS). Within the framework of this effect the shell of the atom is a kind of gravitational “insulator” that prevents the PGF of the nucleons from leaving beyond of the atom. As result of the IAGS effect, the concentration PGF of nucleons is realized only in the region of the nucleus, which leads to an increase in nuclear forces. However, the resistance of the marked “insulator” is finite and if the critical voltage PGF on the nucleus is exceeded, the complete shielding of 展开更多
关键词 Magnetic CHARGES Antielectrons Magnetons Antimagnetons Bispinors Physical MASS Negative MASSES Vortex Electromagnetic (Gravitational) Field Paragravitation and Ferrogravitation “Dark Energy” GRAVITATIONAL SHIELDING (Lensing) Defect of MASS Nuclear Forces
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