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Fusion reactors --- Controlled fusion --- Plasma (Ionized gases) --- Controlled fusion. --- Fusion reactors. --- Plasma (Ionized gases)
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Nuclear Fusion by Inertial Confinement provides a comprehensive analysis of directly driven inertial confinement fusion. All important aspects of the process are covered, including scientific considerations that support the concept, lasers and particle beams as drivers, target fabrication, analytical and numerical calculations, and materials and engineering considerations. Authors from Australia, Germany, Italy, Japan, Russia, Spain, and the U.S. have contributed to the volume, making it an internationally significant work for all scientists working in the Inertial Confinement Fusion (ICF) field, as well as for graduate students in engineering and physics with interest in ICF.
Inertial confinement fusion. --- Nuclear fusion. --- Fusion, Nuclear --- Fusion reactions --- Fusion --- Nuclear reactions --- Fusion, Inertial confinement --- Inertial fusion --- Pellet fusion --- Controlled fusion
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Controlled fusion --- Nuclear fusion --- Plasma (Ionized gases) --- Plasma confinement --- Fusion nucléaire contrôlée --- Plasma (Gaz ionisés) --- Congresses --- Congresses --- Congresses --- Congresses --- Congrès --- Congrès
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539.17 --- Cold fusion --- #WSCH:ETOS --- Cold nuclear fusion --- Fusion, Cold --- Controlled fusion --- Nuclear reactions. Fission. Fusion. Chain reactions etc. --- History. --- 539.17 Nuclear reactions. Fission. Fusion. Chain reactions etc. --- History --- Cold fusion - History.
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