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The problem of macrocrack formation in a biaxial plane strain compression test is studied.
In the second part, the proper specimen of slant shear test is studied.
In addition, the prediction of the concrete's compressive strength by means of the non-destructive ultrasonic pulse velocity test is studied.
The occurrence of transient induced latch up (TLU) in RS485 transceiver IC with on-chip Transient Voltage Suppressor (TVS) under electrical fast transient (EFT) test is studied.
Also the effect of shear rate on the shear test is studied and the braking phenomenon is analysed in relation to the formation of microstructure by considering viscoelastic parameters.
The estimated confidence level and estimated power of the D-statistic hypothesis test is studied using Monte Carlo simulation, with different assumptions about the random field, the drift, the scale of variability of the drift and the number of experimental data (i.e. sample size).
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The time temperature characteristics of strength from SCB test were studied.
Electrochemical properties of ZNFB as static test, cycling test, and fully flowing test are studied to demonstrate our design.
The seismic behavior of members and joints in the frame test were studied in-depth in this paper.
The assembled boards were subjected to the thermal cycling test (−40 °C/+125 °C), and crack initiation and crack propagation during the test were studied.
The assembled microelectronic devices were subjected to a thermal cycling test, and crack initiation and propagation during the test were studied.
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