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10 15 20 25 30 35 40 45 50 69 fig. 1 and fig 2) from outside to the inside of the appropriate core(s) of the reactor; . to transport plasma (11), atomic and/or molecular elements from one inside cavity (20) or core to one or more other inside cavities (21, 19A and 19B) or cores for the purpose to change compositional properties of such elements (26) by the environmental conditions (i.e. gravitational, magnetic, electromagnetic, temperature, contact with other inserted or present atomic or molecular elements, ...), to transport elements to specific areas (19C) - i.e. having another temperature degree - inside one core (fig.1: core E), . to transport recombined elements outside (23) the reactor, i.e. to a decompression and/or a separation unit 24, a storage means 15, . to transport plasma or recombined elements to one or more other plasma reactors with similar or different properties, and/or to a twin/multi-reactor (fig.7), (21, compositional environmental such by ae conditions 49. Reactor (10A), as described in claim 1 or 2, in which, by repositioning atomic and/or molecular elements in and between reactor cores or reactors (fig. 7), several transformation processes of the initial material(s), as described in claim 1 and 2, elements of the periodic table, their isotopes and various combinations of them in organic and an organic molecules are possible, such as: a. the decomposition of existing molecular elements (i.e. CO2) to ate ete -1e ae differently composed molecular elements, either in zero- gravitational | conditions or in specific controlled gravitational molecular either in zero- conditions within the core(s), creation of the condition for atomic welding between the elements inside of at least two cores, d. creation of the Dark Matter which can be withdrawn from the combination of the two matters from at least two cores, which can be collected in gravitational reactors (in 3 x 120 _ combination gravitational reactors) for space travel and motion; 50. Reactor (10A), as described in claim 2, having at least two reactor cores (fig.1: A, B, C1, C2, D, E) which can have each - internally and between them - other conditions and/or dimensions, size and structure - such as: - TY a a different local temperature, different local compression, different positioning in one or more magnetic fields, different positioning in a gravitational magnetic field, different composition of the wall different thickness (50) of the wall(s), different regularity of the wall shape(s) (i.e. asymmetrical volume ray 51), different surface dimensions of the wall, separated chambers in a core (fig.1: C1 and C2), non-spherical cores (fig1: E), atomic elements, b. the combination of atomic and/or molecular elements to new