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On the deformation and frequency analyses of SARS-CoV-2 at nanoscale.

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TLDR
In this article, the SARS-CoV-2 virus was modeled on a viscoelastic spherical structure and the nonlocal elasticity theory was used to consider the effect of interatomic forces on the results.
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This article is published in International Journal of Engineering Science.The article was published on 2022-01-01. It has received 20 citations till now. The article focuses on the topics: Viscoelasticity & Natural frequency.

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On the stress analysis of anisotropic curved panels

TL;DR: In this article , the static bending characteristics of nano-size shells made of triclinic material with different curves are examined. But the behavior of these shells remains poorly understood, and the results presented in this paper can also be used as a benchmark of future works on materials with unsymmetrical crystalline structures.
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On a flexomagnetic behavior of composite structures

TL;DR: In this paper , the converse magnetization effect is considered in the free energy constitutive relation of nano-electro-magneto machines and a new characteristic formulation for static analysis of axially compressed piezomagnetic nanobeams comprising the FM effect is presented.
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Stationary variational principle of mixture unified gradient elasticity

TL;DR: In this paper , the authors proposed a mixture unified gradient theory of elasticity, which can effectively serve as a suitable counterpart for the two-phase local/nonlocal gradient theory with a noteworthy privilege.
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On the vibration dynamics of heterogeneous panels under arbitrary boundary conditions

TL;DR: In this article , the porosity distribution of composite panels is modeled by a cosine model and the sensitivity of both time-dependent transverse displacement and stresses are studied for material composition, porosity level, geometrical parameters, nonlocality and excitation frequency that supported by simply-supported, clamped, free and the combination of them as well as different curves.
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A unified high-order model for size-dependent vibration of nanobeam based on nonlocal strain/stress gradient elasticity with surface effect

TL;DR: In this paper , a unified high-order nanobeam model considering various high order shear deformation beam theories is established to investigate the vibration response of nanobeams on the basis of two-phase local/nonlocal strain and stress gradient theory, as well as surface elasticity theory.
References
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On differential equations of nonlocal elasticity and solutions of screw dislocation and surface waves

TL;DR: In this article, the integropartial differential equations of the linear theory of nonlocal elasticity are reduced to singular partial differential equations for a special class of physically admissible kernels.
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On nonlocal elasticity

TL;DR: In this article, a theory of non-local elasticity is presented via the vehicles of global balance laws and the second law of thermodynamics via the use of a localized Clausius-Duhem inequality and a variational statement of Gibbsian global thermodynamics.
Book

Nonlocal Continuum Field Theories

TL;DR: Memory-dependent nonlocal nonlocal Electromagnetic Elastic Solids as mentioned in this paper have been shown to be memory-dependent on nonlocal elasticity and nonlocal linear elasticity, as well as nonlocal Linear Elasticity and Nonlocal Fluid Dynamics.