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Finally, the effects of various electric surface conditions, geometric parameters and the material power law index on the free vibration and transient response of functionally graded piezoelectric cylindrical panels subjected to various impulsive loads are examined in detail.
Borji et al. (2010) investigated the effect of some media include date-palm peat, perlite, cocopeat and mix of these materials on growing indices of tomato.
Numerical calculations are presented and the effect of the material gradient index on natural frequencies is discussed.
The effects of variation of material properties in terms of material gradation index on deformations, stresses and natural frequency of FG plates are investigated.
Finally, some numerical results are presented and the effects of length scale parameter and material gradient index on the natural frequencies for FG micro/nano plates are discussed.
Parametric studies are also conducted to study the effects of the temperature rise, boundary conditions and the material graded index on the frequency of the FG arches.
The detailed parametric studies are carried out to study the influences of non-circularity, radius-to-thickness ratio, material composition and material profile index on the free vibration frequencies and mode shape characteristics of functionally graded elliptical shells.
This paper is the result of a detailed parametric study conducted to determine the influences of thickness variations in the FG layer, radius-to-thickness ratio, lengths-to-radius ratio, and the material composition and material profile index on the critical parameters of three-layered, truncated, conical shells.
After showing the fast rate of convergence and accuracy of the method, the effects of angular velocity, linear and nonlinear variation of the angle of twist along the beam axis, material length scale parameters, temperature rise and material gradient index on the free vibration of pre-twisted microbeams are studied.
Since the epitaxial gratings are freely suspended with air as the low refractive index material on the top and bottom, the freestanding epitaxial gratings can serve as an optical cavity to support guided mode resonances, which are characterized in reflectance measurement with the tunable laser operating in the range of 1,460 nm to approximately 1,580 nm.
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