FUNDAMENTALS OF PLASMA PHYSICS J A BITTENCOURT PDF

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Fundamentals of Plasma Physics is a general introduction designed to present a comprehensive, logical and unified treatment of the fundamentals of plasma physics based on statistical kinetic theory, with applications to a variety of important plasma phenomena.

Its clarity and completeness makes the text suitable for self-learning and for self-paced courses. Throughout the text the emphasis is on clarity, rather than formality, the various derivations are explained in detail and, wherever possible, the physical interpretations are emphasized. The mathematical treatment is set out in great detail, carrying out the steps which are usually left to the reader.

The problems form an integral part of the text and most of them were designed in such a way as to provide a guideline, stating intermediate steps with answers.

Fundamentals of Plasma Physics. Energy Conservation. Uniform Electrostatic and Magnetostatic Fields. Equation of Motion in the FirstOrder Approximation.

Solution in Plane Waves. Wave Packets and Group Velocity. Curvature Drift. TimeVarying Magnetic Field. Summary of Guiding Center Drifts. Higher Moments of the Distribution Function. Mixture of Various Particle Species. Degree of Ionization in Equilibrium. Conservation of Momentum. The Cold Plasma Model. Electrodynamic Equations for a Conducting Fluid.

Simplified Magnetohydrodynamic Equations. Linearization of the Langevin Equation. AC Conductivity and Electron Mobility.

Electron Diffusion in a Magnetic Field. Diffusion in a Fully Ionized Plasma. Debye Shielding Using the Vlasov Equation. Magnetic Viscosity and Reynolds Number. Freezing of Magnetic Field Lines to the Plasma. Magnetic Pressure. Isobaric Surfaces. Plasma Confinement in a Magnetic Field. The Equilibrium Pinch. The Bennett Pinch. Dynamic Model of the Pinch. Instabilities in a Pinched Plasma Column. The Sausage Instability. The Kink Instability. Convex Field Configurations.

Propagation Perpendicular to the Magnetic Field. Effect of Displacement Current. Wave Propagation in Isotropic Electron Plasmas. J A Bittencourt. Wave Propagation in Magnetized Cold Plasmas. Propagation Parallel to Bo. Basic Equations for Waves in a Warm Magnetoplasma. Electrostatic Longitudinal Wave. Transverse Wave in a Hot Isotropic Plasma. Wave Propagation Across. Dynamics of Binary Collisions. Cross Sections for the Hard Sphere Model.

The Boltzmanns H Function. Boltzmann Collision Term. The FokkerPlanck Equation. Electric Conductivity in a Magnetized Plasma. INDEX Fundamentals of Plasma Physics J. Harmonic Waves. Energy Flow. Plasma Probe. Cross Sections. Free Diffusion. Heat Flow.

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Fundamentals of Plasma Physics

A general introduction designed to present a comprehensive, logical and unified treatment of the fundamentals of plasma physics based on statistical kinetic theory. Its clarity and completeness make it suitable for self-learning and self-paced courses. Problems are included. For advanced undergraduate and first-year graduate students studying plasma physics for the first time. Charged particle motion in constant and uniform electromagnetic fields. Charged particle motion in nonuniform magnetostatic fields.

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Fundamentals of Plasma Physics is a general introduction designed to present a comprehensive, logical and unified treatment of the fundamentals of plasma physics based on statistical kinetic theory, with applications to a variety of important plasma phenomena. Its clarity and completeness makes the text suitable for self-learning and for self-paced courses. Throughout the text the emphasis is on clarity, rather than formality, the various derivations are explained in detail and, wherever possible, the physical interpretations are emphasized. The mathematical treatment is set out in great detail, carrying out the steps which are usually left to the reader.

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It seems that you're in Germany. We have a dedicated site for Germany. The clarity and completeness of the text makes it suitable for self-learning. Throughout the text the emphasis is on clarity, rather than formality. The various derivations are explained in detail and, wherever possible, the physical interpretations are emphasized. The problems form an integral part of the text and most of them were designed in such a way as to provide a guideline for the student, stating intermediate steps with answers. The book is intended primarily for advanced undergraduate and first year graduate students meeting the subject of plasma physics for the first time and is suitable for those who have taken classical mechanics, electrodynamics and mathematics beyond sophomore level.

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