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Titlebook: Energy Storage, Compression, and Switching; W. H. Bostick,V. Nardi,O. S. F. Zucker Book 1976 Plenum Press, New York 1976 Generator.design.

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rchers involved in energy compression, switching, and storage who have a major interest in plasma physics, electron beams, electric and magnetic energy storage systems, and high voltage and high current switches. Areas of interest include: Slow systems: 50-60 Hz machinery, transformers, flywheel-hom
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Grundlagen der stereoskopischen Meßverfahren 2 MeV, 200 kA generator with 10–90% rise and fall times of 10 ns, and a 1 MeV, 100 kA generator with rise and fall times of less than 5 ns. The design of these machines and their measured output characteristics are presented in this paper.
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https://doi.org/10.1007/978-3-030-34906-6mall magnetic energy. Experimental results are presented for a pulse generator of this kind which utilized a piston of 20 MJ kinetic energy, and comparison is made with predictions of a numerical model.
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Measurements of a Low Impedance, Large Area 100 kV Diode a very low inductance dc-charged capacitor circuit whose characteristics are 200 kV, 220 nF and 16 nH. Cold cathodes comprising arrays of metal wires or ribbons have been used. The impedance obeys Child’s Law for space charge limited planar flow at early times. If constant velocity plasma closure b
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Fast Marx Generatornted..Marx generator dc charge voltage is 100 kV, balanced with respect to ground. Pressurized gas (sulfur hexafluoride-SF.) switches are employed and each is equipped with a midplane trigger electrode. Resistive trigger coupling of the Marx switches is employed with the first four switches triggere
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