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10 15 20 25 30 35 40 45 50 57 light, ...), atomic hydrogen, ionized helium, ionized argon, etc. by combining in the correct proportion(s) at least one non-radioactive element (i.e. ) with at least one radioactive source (i.e. thorium) in a gas, in a liquid or in mixture or a combination of the two, in conjunction with a solid matter solution (i.e. Sodium) to create and sustain energy, current, voltage and magnetic field; 95. Method, as described in claim 2, where the closed embodiment can rotated which enhancement the production of currents, the voltages and the magnetic fields. 96. Method, as described in claim 2, where the closed embodiment can contain a rotational system to rotate the material inside the embodiment which enhancement the production of currents, the voltages and the magnetic fields. 97. Method, as described in claim 2, where the closed embodiment can be in vacuum or pressurized, or normal atmospheric conditions, while producing currents, voltages and magnetic fields. 98. Method of de-polarization of electrodes of the system by the use of radioactive material to sustain production of currents, voltages and the magnetic fields without the use of any external sources to recharge the system, while the system is producing power, where the energy for recharging is attained from by the nuclear decay of the source inside the embodiment; (data) 99. Filling a cavity (i.e. a storage container, a tank, a hollow space, a channel) are located in one or more embodiments which may have each one or more layers, generate electrical current by the interaction of moving atomic and/or molecular elements (i.e. atomic hydrogen) with at least one type of nuclear element in one or more cavities and/or internal channels which may replace the present physical conductive material (i.e. print, wires) in a circuit or a microchip; 100. 101. M1. A water-based mixture, as described in claim xx, containing at 102. Cavities and/or channels, as ...., filled with at least one liquid (i.e. water or liquid helium) and a percentage (0,0001% - 99,999%) other elements like sodium, potassium and/or metal or mixtures of metal in that liquid, gas or plasma; 3. Where the wall of the containment can be used — in conjunction with the content of the chemical material and the ionization plasma - to created or withdraw and recycle material 103. Cavity where at least one connector