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Explores the systems of magnetic confinement of high-temperature
plasma with closed and open magnetic field lines which relate to
alternative compact devices of controlled thermonuclear fusion.
Energy balance schemes of thermonuclear plasmas and main reactor
characteristics are presented as the authors compare conceptual
projects based on classical tokamak and stellarator, spherical
tokamak and compact torus. They explore the questions and problems
of new promising nuclear and thermonuclear power plants that source
thermonuclear neutrons on a mixture of deuterium and tritium, and a
low-radioactive reactor on a mixture of deuterium and helium-3.
Explores the systems of magnetic confinement of high-temperature
plasma with closed and open magnetic field lines which relate to
alternative compact devices of controlled thermonuclear fusion.
Energy balance schemes of thermonuclear plasmas and main reactor
characteristics are presented as the authors compare conceptual
projects based on classical tokamak and stellarator, spherical
tokamak and compact torus. They explore the questions and problems
of new promising nuclear and thermonuclear power plants that source
thermonuclear neutrons on a mixture of deuterium and tritium, and a
low-radioactive reactor on a mixture of deuterium and helium-3.
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