Gravity Control by means of Electromagnetic Field through Gas or Plasma at Ultra-Low Pressure Fran De Aquino Maranhao State University, Physics Department, S.Luis/MA, Brazil. Copyright Š 2007-2010 by Fran De Aquino. All Rights Reserved It is shown that the gravity acceleration just above a chamber filled with gas or plasma at ultra-low pressure can be strongly reduced by applying an Extra Low-Frequency (ELF) electromagnetic field across the gas or the plasma. This Gravitational Shielding Effect is related to recent discovery of quantum correlation between gravitational mass and inertial mass. According to the theory samples hung above the gas or the plasma should exhibit a weight decrease when the frequency of the electromagnetic field is decreased or when the intensity of the electromagnetic field is increased. This Gravitational Shielding Effect is unprecedented in the literature and can not be understood in the framework of the General Relativity. From the technical point of view, there are several applications for this discovery; possibly it will change the paradigms of energy generation, transportation and telecommunications. Key words: Phenomenology of quantum gravity, Experimental Tests of Gravitational Theories, Vacuum Chambers, Plasmas devices. PACs: 04.60.Bc, 04.80.Cc, 07.30.Kf, 52.75.-d.
CONTENTS I. INTRODUCTION
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II. THEORY Gravity Control Cells (GCC)
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III. CONSEQUENCES Gravitational Motor using GCC Gravitational Spacecraft Decreasing of inertial forces on the Gravitational Spacecraft Gravity Control inside the Gravitational Spacecraft Gravitational Thrusters Artificial Atmosphere surrounds the Gravitational Spacecraft. Gravitational Lifter High Power Electromagnetic Bomb (A new type of E-bomb). Gravitational Press of Ultra-High Pressure Generation and Detection of Gravitational Radiation Quantum Gravitational Antennas. Quantum Transceivers Instantaneous Interstellar Communications
09 11 12 13 13 14 15 15 16 16 17 18 18 Wireless Electric Power Transmission, by using Quantum Gravitational Antennas. 18 Method and Device using GCCs for obtaining images of Imaginary Bodies Energy shieldings Possibility of Controlled Nuclear Fusion by means of Gravity Control
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IV. CONCLUSION
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APPENDIX A
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APPENDIX B
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References
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