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The effects of temperature-dependent properties, volume fraction index, axial load, initial imperfection, panel geometry and boundary conditions on the thermo-mechanical post-buckling behavior are evaluated in detail through parametric studies.
The effects of the volume fraction profile parameter, dimensionless length scale parameter, initial gap ratio, ground electrode shape parameter, the applied voltage, slenderness ratio and the axial residual stress on the thermal-mechanical-electrical buckling behavior are evaluated in detail through parametric studies.
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Sulfate transport behavior was evaluated in a first test.
Pig behavior was evaluated in a pedigreed Landrace Duroc Yorkshire composite population.
Trimethoprim (TMP) was encapsulated into thiolated and pre-activated α-CD derivatives and the dissolution behavior was evaluated in vitro.
Prior to assessment, atrazine behavior was evaluated in soils with high (SH) and low (SL) atrazine mineralization capacity.
The effects of these loads on fatigue behavior were evaluated in ABAQUS™ using the material properties determined in the laboratory.
The corrosion behavior was evaluated in simulated soil solution (SSS) by potentiodynamic polarization curves and electrochemical impedance spectroscopy (EIS).
The objective of this sample study is to show how the aforementioned behavior is evaluated in real time and analyze the impact on the end-user perception.
Meanwhile, its swelling behavior was evaluated in water solution, which revealed that the swelling process conformed to the Schott model and the diffusion type was non-Fickian diffusion.
Dissolution behavior was evaluated in simulated body fluid (SBF) and physiological normal saline solution at 37 °C for up to 28 days.
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