Plasma physics can seem like several difficult subjects compressed into one—electromagnetism, statistical mechanics, fluid dynamics, kinetic theory, and fusion science. This textbook brings those pieces together into one coherent progression. PLASMA PHYSICS TEXTBOOK: A Complete Foundation in Ionized-Gas Dynamics, from Single-Particle Motion to Fusion and Astrophysical Plasmas gives you a structured pathway from the fundamental behavior of charged particles to the large-scale plasma systems found in laboratories, fusion devices, space, and astrophysical environments. Inside, you will:Build a strong foundation in Debye shielding, plasma frequency, cyclotron motion, guiding-center drifts, and magnetic confinement Understand distribution functions, the Vlasov equation, Coulomb collisions, Landau damping, and nonlinear kinetic phenomena Progress from kinetic theory into two-fluid models and magnetohydrodynamics (MHD) Explore plasma waves, resonances, instabilities, turbulence, transport, and collisionless shocks Connect theory to tokamaks, stellarators, inertial-confinement fusion, solar wind, magnetospheres, astrophysical jets, plasma diagnostics, and industrial applications Follow representative derivations and physical reasoning designed to show why the equations work, rather than simply presenting formulas to memorize Organized into thirty chapters and seven progressive parts, the book is especially suited to physics and engineering students, independent learners, and readers who already possess a foundation in classical mechanics and electromagnetism and want a systematic introduction to advanced plasma physics.If you want to move beyond isolated equations and develop a connected understanding of how ionized matter behaves—from individual charged particles to fusion plasmas and the cosmos add this textbook to your library today.