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10 15 20 25 30 35 40 45 54 atmospheric conditions), without a heating source, without adding electrons (electrical current) to trigger the initial internal process(es), without additional electromagnetic means and without pressurized conditions, in a reactor, as described is claim 1, or in a reactor, as described is claim 2, where said atomic carbon can be collected, for example as deposit of pure atomic carbon in mono-atomic layer of hard black carbon deposited on a specific metal wire, plate, and multy-shape objects and on electrodes or in a multi-layers of carbon, this (is already achieved physically in the lab in large amounts in atmospheric condition without use of pressure or heat), where to achieve the production of this carbon atomic state layering known as graphene or graphene wall, an active liquid or gases or mixture of the two elements, consisting of elements which can remove carbon from materials like steel, CH containing products or carbon containing gases are used as the source of the carbon enriched material , where the carbon atoms can be actively separated from their composite state, like in steel, by means of an intervention of chemically active agent containing elements like potassium, where the agent has the power to remove carbon and release it as gases like CO. in the embodiment of the core, where in the presence of a radioactive source, by the use of the radioactive material as the energy source in the embodiment of the core, an schematic chain of events of these types of reactions are shown in Fig(31), where in prior arts, high temperatures or other abnormal ambient are created to liberate carbon for production of graphene, where in this system and by this method, it is claimed and graphene has been produced in laboratory in sufficient quantities, that the energy needed for the liberation of carbon needed for production of graphene, from its constituent martial is achieved in atomic and nuclear by means use of radioactive material, which is a logical way through radioactive or magnetic energy binding in a simple way to release or loosen the magnetic binding between elements, and then by the use of energy from the same soft radioactive source, in a predetermined solution which is chemically active, which allows the natural and without use of any additions external sources of energy or intervention to achieve the production of carbon in atomic state necessary for the production of graphene, where by the placing of the source in and out side the agent or in one position in the core, and due to the creation of hydrogen first and then ionisation of the same by the same source(s) in the cavity of the core, to generate ions of hydrogen and electron, where this allows the flow of self-generated current necessary with the interaction and intervention of the energy provided by the radioactive source to support the release of carbon from the agent matter, and then for the released ( carbon) in the core to be deposited or coated on the given elements or components within the core, where the element is always in a current created by electrons environment and possessing a induction capabilities it, this being the wire , plate or the connecting wire to for the sources or the electrode to withdraw current from the embodiment, this induction this induction