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The shear strengths of the tested beams were analyzed using a rational procedure proposed based on resistance-demand approach.
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The same beams are analyzed using LS-DYNA nonlinear dynamic finite element analysis procedure.
Flexure of bi-directional functionally graded (FG) circular beams is analyzed using the kinematical assumptions of the Euler Bernoulli theory.
The structure, being modeled as an Euler Bernoulli beam, is analyzed using nonlinear normal modes.
The nonlinear response of a curved beam is analyzed using an equation with two modes, and a shaker test.
The fundamental vibration mode of a cracked cantilever beam is analyzed using continuous wavelet transform and both the location and size of the crack are estimated.
The fundamental vibration mode of a double-cracked cantilever beam is analyzed using continuous wavelet transform and both the location and depth of the cracks are estimated.
To illustrate the combined effect of ISS and CNT weight fraction on the behavior of CNT/polymer, a CNT/polymer cantilever beam was analyzed using a three-level multiscale technique.
Finally, damage morphologies and film cross-sections were analyzed using dual beam microscope (focus ion beam and scanning electron microscope, FIB/SEM) and atomic force microscope (AFM).
Minerals were analyzed using a focused electron beam, whereas a defocused electron beam 10 to 15 μm in diameter was employed for the glass.
The MEG data were analyzed using an adaptive beam-former technique known as Synthetic Aperture Magnetometry (SAM), which provides continuous 3-D images of cortical power changes.
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