1. A biomedical transducer can be represented by a series RLC circuit with a 100 ohm resistors and unknown capacitor and inductor. Analysis of the transducer in the lab indicated that the damping coefficient is 0.4 and natural resonance frequency is 159 Hz. Determine the values for the capacitive and the inductive components. Discuss the way to increase the damping coefficient to 0.707 without affecting the natural resonance frequency.

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1. A biomedical transducer can be represented by a series RLC circuit with a 100 ohm resistors and
unknown capacitor and inductor. Analysis of the transducer in the lab indicated that the damping
coefficient is 0.4 and natural resonance frequency is 159 Hz. Determine the values for the
capacitive and the inductive components. Discuss the way to increase the damping coefficient to
0.707 without affecting the natural resonance frequency.
Transcribed Image Text:1. A biomedical transducer can be represented by a series RLC circuit with a 100 ohm resistors and unknown capacitor and inductor. Analysis of the transducer in the lab indicated that the damping coefficient is 0.4 and natural resonance frequency is 159 Hz. Determine the values for the capacitive and the inductive components. Discuss the way to increase the damping coefficient to 0.707 without affecting the natural resonance frequency.
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