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10 15 20 25 30 35 40 45 15 device may connect certain terminals is such a way that there is at least one quasi stable output of current. Our TIPI-reactor has - on the atomic and molecular level and dimension - a plurality of dynamic zones with different electrical potency (150, 151, 152, 153)(thus with more or less free electrons), which are created by the constant interaction of the radiation from the radioactive source(s) with specific atoms, molecules and/or their isotopes, where these interactions alters the atomic properties and characteristics of a number of said atoms and molecules and/or their isotopes, and thus also influences their ability to restructure internally, to combine with other atoms and molecules and/or isotopes, and/or to decay to their original state, where in principle each said zone with different electrical potency may be connected or reached by a terminal (212); A very important method is that to create atomic hydrogen at environmental conditions (i.e. at room or outside temperature, atmospheric conditions), without a heating source, without adding electrons (electrical current) to trigger the initial internal process(es), like creation of plasma, 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, both TIPI-plasma reactors. A very important method is also to create in a TIPI- plasma reactor, atomic helium at environmental conditions (i.e. at room or outside temperature, atmospheric conditions), without a heating source, without adding electrons (electrical current) to trigger the initial internal process(es), like scintillation, 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, both TIPI-plasma reactors. Another very important method is to create atomic or molecular carbon at it environmental conditions (i.e. at room or outside temperature, 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 as mono-atomic layer of hard black carbon deposited on a specific metal wire, plate, and multi-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. A similar method ir to create all kind of atomic elements of the periodic table and their isotopes at environmental conditions (i.e. at room or outside temperature, atmospheric conditions), without a heating source, without