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Titlebook: Sources of High-Intensity Ultrasound; L. D. Rozenberg Book 1969 Springer Science+Business Media New York 1969 acoustics.engineering.sound.

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Waveguide Systems for Flexural Vibrationson of forced harmonic elastic vibrations from their source to a load in a steady-state resonance regime. This implies that the possible vibration waveforms of interest in these waveguides are determined by the conditions under which they are driven by the harmonic force at the resonance frequency an
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Calibration of Ultrasonic Receiversitivity, which is defined as the ratio of the emf developed by the ultrasonic receiver at a certain point of the ultrasonic field to the ultrasonic pressure that would exist at the same point of the field in the absence of the receiver.
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Characteristics of the Processed Media and Fundamental Problems Associated with the Input Transmissinergy to the working medium so as to effect the given technological process; d) maximum stability of the resonance parameters and integrity of the waveguideradiating devices when working in aggressive media.
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Matchingde system. Two problems are solved in this case: (a) compensation of the reactive component X. of the input load impedance; and, (b) reduction of the resistive (active) component R. to the required optimum value.
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Transmission into Liquid Mediaradiating surface upsets the homogeneity of the vibrations, i.e., in addition to the longitudinal modes of the radiator, which form a plane wave with all points of the radiating surface vibrating in phase and with the same amplitude, there also occur complex flexural modes.
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Ultrasonic Technologyhttp://image.papertrans.cn/s/image/872106.jpg
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https://doi.org/10.1007/978-1-4899-6363-5acoustics; engineering; sound; ultrasound
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978-1-4899-6181-5Springer Science+Business Media New York 1969
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