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10 15 20 25 30 35 40 45 50 55 86 122. A chemo-nuclear, a bio-nuclear and/or bio-chemical plasma reactor, as per claimed method 1, 2 and 7, in which channels are created by mould-injection or similar, by photographic means, by printing technology, by etching chemically, by laser or other techniques; 123. A chemo-nuclear, a bio-nuclear and/or bio-chemical plasma reactor, as per claimed method 1, 2 and 7, in which channels composed by contacting two surface from which at least one has relief characteristics; 124. A chemo-nuclear, a bio-nuclear and/or bio-chemical plasma reactor, as per claimed method 1, 2 and 7, in which changes of flow of electrons and effects like described in claim 92 can provoke between at least two cavities of the reactor effects like in electronics components, such as a resistor, a transistor, a diode, an inducer, etc.; 125. A chemo-nuclear, a bio-nuclear and/or bio-chemical plasma reactor, as per claimed method 1, 2 and 7, in which the production of the currents and voltages can be controlled or programmed by the size of the electrodes/terminals, their material and the positioning of the electrodes/terminals to the surface of the liquid (i.e.2mm above), or the positioning in the plasma or gas; 126. Method to use inert gasses as energy-homogenisers for transfer of push radioactive energy output to continuous ionization energy for lower order atomic elements, meaning changing of an AC output to a DC; 127. Method of use of electro-volt energy and free electrons created by the above mentioned methods and methods described in patent application EP05447221 for creation of magnetic fields necessary for creation of (planetary-like) passive magnetic fields, thus not a solid magnet field effects, within the confinement of the embodiment or embodiments, or the surrounding area, and where the embodiment may be without terminals or electrodes; 128. Method to create magnetic fields as described in the method of claim 43 or 44, with the use of liquid metals or liquid gasses or metallic molecules placed into the embodiment, which can be static or in motion; 129. Method to build an electronic component like a micro-chips (190), an integrated circuit (160), a transistor, a capacitor, a diode, a triode, etc., where said electronic component has inside (187) his embodiment at least one chemo-nuclear, bio-nuclear and/or bio-chemical plasma reactor (162) which is a reactor, as described in claim 1 or 2, and where inside channels (172), chambers (177, 179) in one or more layers (171A, 171B, 171C) - made by mould-injection, by photographic means, by printing technology, by etching chemically, by engraving, by laser or by similar processes — contain and transport liquids (125), gasses and plasma, and currents, where these current(s) may be picked up by one or more terminals (118, 178) to be delivered to at least one electronic core of one side to another, for the use of and the production of new elements and materials;