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Furthermore, because these rating scales were constructed and validated during the early 80s to the mid 90s, dimensional analyses have fully relied on exploratory methods.
Dimensional analyses have suggested that symmetry/hoarding symptoms may be associated with a poorer response to SSRI therapy [ 810, 811], while aggressive/religious/sexual symptoms may predict better outcomes [ 810, 812].
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Two sets of full three-dimensional analyses have been performed (one with the thermal residual stresses developed while curing the laminate and the other without thermal residual stresses i.e., with mechanical loading only) to calculate the displacements and interlaminar stresses along the annular shaped delaminated interface responsible for delamination onset and propagation.
The expected seismic inputs are individuated and two-dimensional numerical analyses have been done.
The expected seismic inputs were provided and two-dimensional numerical analyses have been done.
Two-dimensional electroelastic analyses have been performed theoretically on a transversely isotropic piezoelectric material containing an elliptic hole, subjected to a uniform stress field and a uniform electric displacement field at infinity while the surface of the hole is free of traction and electrically open.
Details of the two-dimensional vector analyses have been described previously elsewhere and were used accordingly in the present study [ 20].
Axisymmetric and three dimensional finite element analyses have been carried out on intact and broken ellipsoidal inhomogeneities in an infinite body under uniaxial tension and under pure shear.
X-Ray diffraction (XRD) and bi-dimensional XRD (XRD2) analyses have been performed to investigate the multilayer micro-structure before and after the thermal treatments.
Three-dimensional microprobe RBS analyses have been performed on a sample that has a structure with 2 layers of 10 nm thick Pt gratings separated vertically by a 25 nm thick SiO2 layer and offset 90° each other.
In this study, three-dimensional finite element analyses have been conducted to calculate the fracture mechanics parameters, including the stress intensity factors (SIFs), the strain energy release rate G and two phase angles ψ and φ for semi-elliptical interface surface cracks in finite thickness plates.
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