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Electroacoustic phenomena arise when ultrasound propagates through a fluid containing ions. The associated particle motion generates electric signals because ions have electric charge. This coupling between ultrasound and electric field is called electroacoustic phenomena. The fluid might be a simple Newtonian liquid, or complex heterogeneous dispersion, emulsion or even a porous body. There are several different electroacoustic effects depending on the nature of the fluid.

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  • Elektroakustika (cs)
  • Electroacoustic phenomena (en)
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  • Elektroakustika je věda, která se zabývá zvukem, jeho šířením, jeho záznamem a reprodukcí za použití elektroniky. Věda, která zasahuje do části vědního oboru akustiky a rovněž zasahuje do části vědního oboru elektroniky, významné postavení v elektroakustice mají měniče. (cs)
  • Electroacoustic phenomena arise when ultrasound propagates through a fluid containing ions. The associated particle motion generates electric signals because ions have electric charge. This coupling between ultrasound and electric field is called electroacoustic phenomena. The fluid might be a simple Newtonian liquid, or complex heterogeneous dispersion, emulsion or even a porous body. There are several different electroacoustic effects depending on the nature of the fluid. (en)
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  • Elektroakustika je věda, která se zabývá zvukem, jeho šířením, jeho záznamem a reprodukcí za použití elektroniky. Věda, která zasahuje do části vědního oboru akustiky a rovněž zasahuje do části vědního oboru elektroniky, významné postavení v elektroakustice mají měniče. (cs)
  • Electroacoustic phenomena arise when ultrasound propagates through a fluid containing ions. The associated particle motion generates electric signals because ions have electric charge. This coupling between ultrasound and electric field is called electroacoustic phenomena. The fluid might be a simple Newtonian liquid, or complex heterogeneous dispersion, emulsion or even a porous body. There are several different electroacoustic effects depending on the nature of the fluid. * Ion vibration current (IVI) and potential, an electric signal that arises when an acoustic wave propagates through a homogeneous fluid. * Streaming vibration current (SVI) and potential, an electric signal that arises when an acoustic wave propagates through a porous body in which the pores are filled with fluid. * Colloid vibration current (CVI) and potential, an electric signal that arises when ultrasound propagates through a heterogeneous fluid, such as a dispersion or emulsion. * Electric sonic amplitude (ESA), the inverse of the CVI effect, in which an acoustic field arises when an electric field propagates through a heterogeneous fluid. (en)
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