Overview: Suggests a simple, frequency-based method to analyze and evaluate the stability of periodic motions of a wide class of systems: time-variant, nonlinear (self-oscillation, forced oscillation), synchronThe book introduces possibly the most compact, simple and physically understandable tool that can describe, explain, predict and design the widest set of phenomena in time-variant and nonlinear oscillations. The phenomena described include parametric resonances, combined resonances, instability of forced oscillations, synchronization, distributed parameter oscillation and flatter, parame
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