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DESCRIPTION OF THE SUSPENSIONS AND THEIR
SUSPENSION PROPERTIES AND ANALYSIS
3 other sections not shown
aluminum plate angular velocity Beams calculated capacitors chamber Chapter cold rolled steel corotation correcting coil damping coefficient difference frequency different equilibrium heights double magnetic suspension double suspension drift DYNE-SEC/CM dyne/cm effective spring constant equilibrium position feedback loop feedback voltage gain ferrite floor vibration force FREQUENCY HZ frequency spectra granite stone graph gravitational red shift harmonic oscillators height to frequency hybrid double magnetic independent suspensions inertial clock lifting force lower position transducer lower rotor suspended lower suspension mass added mixer frequency versus Noise spectra nylon ring output photodiode pole piece resonance peak resonant frequency response curve rotation rotor in suspension sensing coil shown in Fig signal spectrum analyzer spring with damping standard equilibrium height static load method suspended object tank circuit temperature coefficients transfer function turntable upper and lower upper position transducer upper rotor upper suspension value of k2 versus the equilibrium white noise source