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10 15 20 25 30 35 40 45 50 55 51 vapor) starts rotating, and in conjunction with the radiation of the nuclear sources, start scintillation and ionization processes leading to plasma’s, provoking in the boundary of the cavity of each embodiment currents and magnetic fields — where also the materials of the core(s) or the coated materials (381B) on it — inside or outside - may deliver additional interacting elements — so the interacting magnetic fields provide a hovering effect of the total reactor (380A), and a self-sustaining continuous rotation of the reactor; We claim also the method to create in a reactor, built after the method described in claim 197, additional effects like internal circulation of the enclosed materials (like charged plasma) by opening or closing opening means (388) in the wall(s) (382A) or bottom-plate (382B) of the smaller core embodiment, or like the release of additional materials from closed containers - in or on the wall or in bottom- plates - which open from the moment a programmable minimal rotation is attained (fly-wheel effect). We claim also the method to create magnetic fields through or by plasma, in a reactor (Fig. 25, Fig. 26), working after the method as described in claim 1 or claim 2, and claims 7 and 14, where the reactor (251) and at least one surrounding structure (252) is equipped with solid magnets (232), where a part of the initially liquid hydrogen (253) from which H* is created and where carbon can be extracted from the construction material(s) (i.e. steel 254) of the core, where the carbon can be utilized as a conductive material in it’s atom or molecular state in a mixture (255) in the core for increase in transportation of energy or current at his dynamic condition, for example increase or redraw of energy of the core or increased in the magnetic field of the core, where the changes of the nucleus in it's atomic or molecular state or electrons freed due to or through scintillation all can be used for creation of magnetic fields when the material(s) within the dynamic; We claim also the method to use a chemo-nuclear, bio-nuclear and/or bio- chemical nuclear reactor (400B), working after the method described in claim 1 or 2, as a longevity heating source for the transformation (cleaning, separation) of environmental air (400C)(containing moisture, dust, smoke) and/or liquid(s)(400D), like polluted water, into clean air and clean water (400E), for their use by humans, animals, plants in various fields, like for drinking water, water for households, water for irrigation, water of industrial processes, water for heating, where said environmental air and/or water is introduced in a embodiment (400A) in which at least one said reactor is positioned in such a way that around the reactor there is sufficient space (402A) to circulate said environmental materials and to heat them up until they reach their vapor state, where then this vapor is lead into a different area (402B) equipped with condensation means (404), and where said embodiment is equipped with inlet means (401A), out-let means (401B, 401C, 401D) for the targeted outcome (clean air and water, heat) and out-let means (401E) for the capturing and transport of residua or of hazardous elements (i.e. cadmium) which are collected by separation/collections means such as special magnet means, as described in claim 5, which may be positioned in several area’s of the embodiment (403A, 403B), or such as zones which specific magnetic fields which attract or repulse specific elements in the vapor (406) to a preferred location(s) where they can be collected, and/or where said reactor can also have inlet means (220, 221) and outlet means (222, 223, 224) to