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Governing equations are derived from the principle of virtual displacements.
Nonlocal governing equations of motion for the nanoplate are derived from the principle of virtual displacements.
The governing equations are derived from the principle of virtual work.
Governing equations are derived from the principle of the stationary value of total potential energy.
Governing equations are derived from the principle of minimum total potential energy.
Governing nonlinear equations are derived from the principle of virtual displacements.
Nonlocal governing equation of motion for this graphene sheet system is derived from the principle of virtual displacements.
The analytical model is derived from the principle of potential energy based on the classical laminated plate theory.
The governing equations are, then, derived from the Principle of Virtual Displacements considering the temperature field as an external load.
The stability equations and force displacement relationships are derived from the principle of minimum total potential energy.
The governing equations are derived from the Principle of Virtual Displacements (PVD), and Navier-type closed-form solutions are adopted.
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