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Page 14 of 52
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10 15 20 25 30 35 40 45 50 14 preferred elements of the periodic table, where this new composed liquid will be used as initial material(s) to be processed in a TIPl-reactor. This method discloses pre-processing steps to create basic materials which will form together the “initial material(s)’. This method can be applied in separated cavities, as described above in claim 19, but the creation of such different basic materials or compounds for a specific initial material can also happen in distant locations or plants. We also claim the method to compose initial material(s), by adding or inserting at least one solid tablet (145) - composed by one or more preferred solid elements (143A, 143 B, 143C and 143D) of the periodic table - to a initial liquid (that can or can not act as a catalyst). The method disclosed here can be used to add ina simple way — well dosed quantities — of a reactant into the mixture for or in a reactor. This way also essential elements to create additional radioactive isotopes can be added to the mixture. A new method is disclosed to compose initial material(s), as described in claim 1, 2, and 14, and possible claim 7 by adding or inserting at least one liquid quantity - composed by one or more preferred solid elements (143A, 143B, 143C and 143D) of the periodic table - to a initial liquid (that can or can not act as a catalyst). We also claim the method by which in control and creation of single or a double or more magnetic fields in the core of a reactor of any shape or size, where the second field can super impose the first, condition(s) can be created, that the core or body which is attached to, can move in any direction, up, down or side ways, within its environment, being in liquid, gas, or mixture of any elements in the periodic table, or vacuum of space, in respect to the position of the gravitational force and magnetic field of the center of a planet, or between two or more gravitational or magnetic fields of center of planets, or between a system, or bigger dimensions, utilizing the magnetic field forces created and controlled with the confinement of the reactor and its surrounding for motion and positioning. At this moment of applying for patent we have already reached in several laboratories tests limited hovering (appr. 15 mm) of a total reactor embodiment of 4.8 kg. This hovering effect was reached by a rotative reactor. In fig. 383A and 38B is disclosed a reactor which is able to create double magnetic fields, which are able to extend till outside the system. This will create shielding effects for a craft equipped with such system. The double magnetic field of such system will act as an independent field in the gravitational field of planets, and therefore be able to move independently within such field. The reactor can be equipped by systems to propagate in any direction. We also claim the method to create a three dimensional magnetic field by means of interaction between matter and plasma or any charged particles, where the matter be the embodiment of the core or metallic elements in dynamic state, this to be called the passive magnetic field, rather than magnetic field(s) generated by in solid matter by realignment of electrons. Such passive magnetic field — depending from the size of the reactor - will be influencing over large distances, in many order of magnitude farther than the magnetic field of solid magnets can reach, since the later only reach the distance their electrons can leave the