magnetic confinement of plasma - Axtarish в Google
Magnetic confinement fusion attempts to use the physics of charged particle motion to contain the plasma particles by applying strong magnetic fields. Tokamaks ... Types · Magnetic mirrors · Other · Magnetic fusion energy
Удержание в магнитных ловушках Удержание в магнитных ловушках
Магнитное удержание, магнитная ловушка — один из способов долговременного сохранения плазмы в стабильном состоянии без её контакта с поверхностью ёмкости, в которой она содержится. Для магнитного захвата плазмы используется торообразная... Википедия
In a suitably shaped magnetic field cage it is therefore possible to confine a plasma and keep it away from material walls.
The magnetic confinement concept employs a giant magnetic field to confine the movement of deuterium–tritium plasma.
In the laboratory, researchers use strong magnetic fields to confine plasma. This magnetic confinement strategy may allow them to confine fusion grade plasmas ...
Scientists use magnetic confinement devices to manipulate plasmas. The most common fusion reactors of that kind are tokamaks and stellarators.
High-temperature plasma, which is composed of charge particles, is very easily confined in a magnetic field with the Lorentz force that F=qυ×B.
4 нояб. 2024 г. · Magnetic confinement of plasmas is the most highly developed approach to controlled fusion. A large part of the problem of fusion has been the attainment of ...
Total current determines confined plasma pressure. Page 25. Screw-Pinch. Θ-pinch has bad confinement properties (losses along magnetic field lines). Z-pinch is ...
In magnetic confinement fusion (MCF), the fuel (deuterium and tritium) is heated to a temperature which is ten times hotter than the centre of the Sun.
Confining plasma is required in order to achieve fusion power. There are two major approaches to confinement: magnetic confinement and inertial confinement.
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