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It is suggested that the PFM approach can be used to study the structure of a wide range of biological materials by monitoring their electromechanical behavior at the nanoscale.
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Laterally-constrained transducers exhibit complex electromechanical behavior.
A physically based method is proposed to represent interpenetrating polymer networks and their electromechanical behavior.
The combined properties of the oxide substrate system control deformation, fracture, and electromechanical behavior.
These structures demonstrate rich electromechanical behavior and could be advantageous in applications.
The present methods are applied to the cantilevered PM and their electromechanical behavior is studied.
Each of these tasks is connected with specific requirements with regard to the electromechanical behavior of the composite structure.
An experimental investigation of the electromechanical behavior of single crystals of the ferroelectric perovskite barium titanate is presented.
The fabrication, oxidation protection, mechanical behavior, thermal conductivity, electrical conductivity, electromechanical behavior, and thermal expansion of carbon-matrix composites are covered.
Furthermore, we study the effect of nonlinear stiffness of the compliant substrate on the electromechanical behavior of the film.
Electrical equivalent circuits with impedance elements modeling the electromechanical behavior of a thin plate with piezoelectric actuators are presented.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com