"The same effect can be used in reverse – inverse piezoelectric effect – whereby the application of an electric field to a crystal causes realignment of the internal dipole structure. This realignment results in crystal lengthening or contraction, converting electrical energy into kinetic or mechanical energy. This is how ultrasound transducers produce sound waves."
"The same effect can be used in reverse – inverse piezoelectric effect – whereby the application of an electric field to a crystal causes realignment of the internal dipole structure. This realignment results in crystal lengthening or contraction, converting electrical energy into kinetic or mechanical energy. This is how ultrasound transducers produce sound waves."
"The same effect can be used in reverse – inverse piezoelectric effect – whereby the application of an electric field to a crystal causes realignment of the internal dipole structure. This realignment results in crystal lengthening or contraction, converting electrical energy into kinetic or mechanical energy. This is how ultrasound transducers produce sound waves."