
Theory of Low-Temperature Plasma Physics
1 592,-

Driven Rotation, Self-Generated Flow, and Momentum Transport in Tokamak Plasmas
1 466,-

Computation of Atomic and Molecular Processes
1 709,-

Fundamental Aspects of Plasma Chemical Physics
1 124,-

Fundamental Aspects of Plasma Chemical Physics
1 592,-

Powerful Pulsed Plasma Generators
1 340,-

Fundamentals of van der Waals and Casimir Interactions
1 340,-

Driven Rotation, Self-Generated Flow, and Momentum Transport in Tokamak Plasmas
1 466,-

Statistical Physics of Nanoparticles in the Gas Phase
1 214,-

The Generalized Multipole Technique for Light Scattering
1 340,-

Theory of Low-Temperature Plasma Physics
1 592,-

Driven Rotation, Self-Generated Flow, and Momentum Transport in Tokamak Plasmas
1 466,-

Computation of Atomic and Molecular Processes
1 709,-

Fundamental Aspects of Plasma Chemical Physics
1 124,-

Fundamental Aspects of Plasma Chemical Physics
1 592,-

Powerful Pulsed Plasma Generators
1 340,-

Fundamentals of van der Waals and Casimir Interactions
1 340,-

Driven Rotation, Self-Generated Flow, and Momentum Transport in Tokamak Plasmas
1 466,-

Statistical Physics of Nanoparticles in the Gas Phase
1 214,-

The Generalized Multipole Technique for Light Scattering
1 340,-