Abstract

The equivalent electrical circuit for a variable path liquid interferometer employing an X-cut quartz crystal in the gap of a reentrant cylindrical 3 kMc electromagnetic cavity resonator will be presented. This will be employed in an analysis of the optimum design of the cavity-crystal transducer system and associated microwave circuitry to determine the change in the radiation impedance as the acoustic path is varied. The analysis of the atter to yield values of the acoustic velocity and high attenuation in the liquid and reflection at the liquid-solid interfaces and the design of the acoustic interferometer will also be discussed.

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