FIELD: various fields of nuclear physics and technology. SUBSTANCE: invention is related to magneto-nucleonic catalysis using magnetically charged elementary particles for converting chemical elements and their compounds with aid of electromagnetic and corpuscular radiation by interaction with magnetically charged particles and integration with them followed by disintegration of nuclear-bonded nuclear structures; it may be also used for nuclear (nucleonic) power plants and methods for generating electrical, magnetic, and thermal energy using reactions of magneto-nucleonic catalysis. To this end chemical elements are acted upon by catalyzing agent in the form of magnetically charged elementary particles. In the process nuclear structure of chemical elements undergoes nucleonic transformation and steady state of magnetically charged elementary particles is attained with nuclei of source chemical elements. Chemical elements and their compounds are transformed into other chemical elements and their compounds this transformation being accompanied by nuclear fusion and disintegration. Monopoles and dions are used as magnetically charged elementary particles. Device implementing this method has at least one of its modules used as means for acting upon chemical elements and their compounds with magnetically charged elementary particles. Such module may be made in the form of facility functioning to interrupt current through at least one circuit conductor in response to variations in current flowing through conductor. Conductor is placed in insulating medium wherein breakdown voltage is higher than highest voltage across any of circuit conductors. EFFECT: provision for transforming chemical elements and their compounds and for developing new technologies for producing chemical elements and generating energy. 31 cl, 43 dwg
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Authors
Dates
2002-02-27—Published
1999-10-11—Filed