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10 15 20 25 30 35 40 45 50 172. 173. 174. 175. 176. 177. 178. 179. 180. 98 Method to assemble at least two layers of graphene together with at least one layer of diamond i.e. diamond, a slide of diamond, this resulting a simple or complex sandwiched switch set to be put ON when radiated by EUV or UV for various electrical and electronic applications; 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; 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; Graphene, as described in claim 173, that 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); Reactor, as described in claim 1 and 2, which it’s electric output can used as basic supply to be put through at least one system as described in claim 140, for the current to be enhanced by several times; Method 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); Reactor, as described is claim 1, or in a reactor, as described is claim 2, equipped with appropriate transport means to remove and/or replace collection means — such as electrodes, plates, specifically altered liquids, liquids containing new generated solids — where said collection means are covered with and/or are containing the targeted atomic elements of the periodic table and their isotopes, so said collection means can be transported outside said reactor for further use; Reactor, as described is claim 1, or in a reactor, as described is claim 2, equipped or filled with collection means — such as hardware structures like electrodes, plates, or dynamic matters states like liquids, gasses — where after processing said collection means are covered with and/or are containing the targeted atomic elements of the periodic table and their isotopes, so said collection means are be transported outside said reactor for further use; Method to create - in a programmable and controlled way - in a reactor