By Dr Jan Pajak
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Additional resources for ADVANCED MAGNETIC PROPULSION SYSTEMS (UFOs, Magnocraft, Free Energy Devices) Theory of the Magnocraft
F-38 Fig. F4. A basic arrangement of two Oscillatory Chambers called the "twin-chamber capsule". The main application of this capsule is to constitute a propulsor for the Magnocraft. The twin-chamber capsule is formed from two oppositely oriented chambers placed one inside the other. Because of the need for free floating of the inner (I) chamber suspended inside of the outer (O) one, the side edges "a" of both Oscillatory Chambers must meet the equation: ao=3·ai (see equation G9). The resultant magnetic flux (R) yield to the environment from these arrangements is obtained as a difference between outputs from chambers having opposite orientation of poles.
The principle of this flow will be identical to that of some electric motors which, when provided with motion, turn themselves into generators and produce electricity (instead of consuming it). This principle will allow for the elimination of energy losses during the idle running of machines; for inertia; during accelerating and decelerating of masses, etc. In this way a large proportion of energy that gets wasted at present will be recoverable after the introduction of Oscillatory Chambers. 6.
During experiments the chamber must be placed between N and S poles of a strong electromagnet. The magnetic field produced by this electromagnet runs along the chamber's (m) axis and pushes all sparks toward the surface of the side walls. This push causes them to rotate in a clockwise (or counter-clockwise) direction. Without this initial magnetic field extended along the axis "m", the sparks would not rotate orderly around the chamber's peripherals, but rather jump chaotically in all possible directions.
ADVANCED MAGNETIC PROPULSION SYSTEMS (UFOs, Magnocraft, Free Energy Devices) Theory of the Magnocraft by Dr Jan Pajak