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Adiabatic Invariants in the Motions of Charged Particles
Hydromagnetic Basis for Treatment of Plasmas
Mechanism of Ion Acceleration by Dynamic Pinch Instabilities
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adiabatic invariance argon axial field axial magnetic field Bz field charge separation charged particle coaxial coil collisions condenser constant Couette flow current density curves cylinder D-loop deuterium discharge current discharge tube distance distribution function E. N. Parker effect electric field electrodes energy enthalpy equation of motion equilibrium F. R. SCOTT field lines fluid flux frequency gases gauss heat transfer hence Hertweck hydromagnetic indicated inductance initial instability ionization ions km/sec Larmor lines of force loop Lorentz force luminous front Mach number magnetic field magnetohydrodynamic Maxwell's equation measurements microwave neutrons observed obtained orbit oscillations perpendicular perturbation photocell photographs Phys pinch discharge plane plasma oscillations pressure probe signals radial radius region shock front shock pulse shock tube shock tube section shows solar solution spark gap stability STOKES FLOW temperature theory tion usec values variation varying velocity voltage wave length xsec zero