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In a more elaborate analysis, the tension-stiffening effect was investigated using an inverse technique earlier developed by the authors.
This effect was investigated using Time-of-Flight SecondAtomicn Mass Spectrometry (TOForceS), AtoMicroscopyMicroscopy (AFM) and Transmission Electron Microscopy (TEM).
This effect was investigated using three different solid concentrations; 0.05, 0.1, and 0.2 wt%.
This effect was investigated using pentobarbital-anaesthetised male albino Sprague-Dawley rats [ 75].
In both groups of patients, the existence of a dose-related effect was investigated using a one-way analysis of variance for repeated measures including only the different concentrations of NO.
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The edge effect is investigated using the local electro-thermal model.
This effect is investigated using analytical solutions based on the principle of virtual displacements.
The effects of process parameters on trim-rate, trim-rate-nonuniformity and microloading effect are investigated using design-of-experiment.
In this work, the thermal effect is investigated using DEM-based micromechanics model implemented in Particle Flow Code (PFC).
The boundary effect is investigated using images and the first side and corner reflections are found to be a minimum requirement to estimate the spatial correlation.
Non-stationary random vibration of 3D time-dependent train bridge systems subjected to multi-point earthquake excitations, including wave passage effect, is investigated using the pseudo-excitation method (PEM).
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