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Coupling to the Vibrator
Analysis from the Transient Viewpoint
4 other sections not shown
air damped ance angular velocity applied force arrow direction assuming unity coupling axis calculated circuit constants controlled plate conductance corresponding coupling coefficients critical resistance critical value curve damping circuit damping constant damping current decrease deflection desired differential equations dynamic resistance effect of inductance effective damping elastance electrical circuit electrical resistance element expression Fourier series give critical damping grid hence increases independent of frequency inertia linear magnetomotive forces maximum mechanical circuit mechanical system method of damping mirror moduli of vibration natural frequency negative resistance obtained ohms oscillations oscillatory plate circuit plate coil ratio real roots reduction factor resistance neutralization resonance response restoring torque Rlm Rml root becomes root mean square series circuit shows simplification solution Solving strips Substituting temperature transfer reactance transient investigation undamped vacuum tube vibrator circuit vibrator constants voltage