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Page 43 of 52

Page 43 of 52
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10 15 20 25 30 35 40 45 50 43 We disclose the method to use any plastic material (371), which is composed by carbon elements, to create graphene (378B) or doped graphene, in a reactor environment (Fig. 37) as described in claim 1, 2, and 39, and we disclose the new method to use any plastic material (371), which is composed by carbon elements to create graphene in a reactor environment as described in claim 1, 2, and 39, where the carbon itself becomes part of the environment which supports and enhances the creation and maintenance of magnetic field(s) (379, 391) within the core. We disclose and claim also that graphene, as described in claim 173, can be created and utilize while the reactor is in the operational mode to create new materials, with graphene as it’s basic material, for example graphene is used to create hydrogen within the core by creating the right environment where carbon atom can attain additional plasma’s and electrons which are created in the core during it’s operation (C’? + 4H* + 4 e’). A method is disclosed to build a ampere booster (Fig. 33A) by encapsulate a reactor (332), as is described | in 1 claim 1, filled with: wea nae ee a. a quantity of hydrogen, b. one gas or a mixture of gasses of the group 18 (He, Ne, Ar, Kr, Xe, Rn, Juo) or other elements which can ascent or descent to this group, c. anuclear source in a diamond crystal embodiment (331) or an embodiment made of diamond crystal slides, where at least two non-connecting zones on the embodiment (330) are covered each by at least one layer of graphene (333) or other conductive material(s), making this way a basic ampere booster unit which will be activated when exposed to EUV (335B) or UV radiation internally or externally, provided by the internal nuclear source or by an outside EUV/UV-source (335A), where the electron released by the hydrogen through scintillation can be utilized as additional current supply. Such booster can be positioned between or inside any power source and an electric or electronic device. diamond A basic ampere booster unit, as described in method disclosed in claim 181, where on said graphene layers or other layers of conductive materials, conductive wires are connected to input current (334A) and to output (334B) boosted current. A method is disclosed to build a step-up ampere booster set or network (Fig. 33B) with ampere boosters, where a basic ampere booster unit, as described in claim 181, on one or both of his graphene layers (333) d. an additional layer (336) of diamond crystal block, powder or vapor, where on a least one graphene layer (337) is placed, e. and/or additional diamond(s) with said encapsulated reactor(s) and a layer of graphene is/are placed, An ampere booster. Now is disclose a first system to boost amperage.