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The results are compared with theory and discussed in connection with the strong interaction with the substrate.
Data from this charge monitor, as well as SPIDER wafers are compared to theory.
Measured resonance frequencies of an aluminium alloy plate up to the postbuckling region are compared with theory.
The SIRE technique was experimentally applied to monopole and dipole sources and the results are compared with theory and standard methods.
Simulated pullouts of single fibers are compared with theory and test results for the cases of perfectly-plastic and slip-hardening behavior of the fiber matrix interface.
Refined approximate theories are compared with continuum theory and it is found that Mindlin theory for plates is insufficient in those cases in which local deformation plays a significant role.
Convergence of the results is analyzed, and numerical results of the present theory are compared with other theories for validation.
For validation, numerical results of the present theory are compared with other theories and the 3D FEM solutions.
In the present paper, the results of present higher order theory are compared with two other theories, viz., the theory without thickness normal strain and Love's first approximation thin shell theory.
Natural frequency parameters and buckling coefficients obtained by the present theory are compared with the Mindlin plate theory (first order plate theory) results, Reddy's theory results and other higher order plate theory results.
Our results are compared with quasilinear theory and nonlinear diffusion theories.
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