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The theoretical formulation considered includes heat conduction and chemical diffusion due to both molecular and thermal diffusion potentials.
The formulation considered can be adapted in order to include as particular cases a great number of estimation problems of interest.
In the wake of this proposal, size effects in nano-beams were investigated in literature by adopting a differential formulation considered to be equivalent to the integral one.
In the formulation considered, the microparticle model involves a non-linear hyperbolic differential equation with source terms, and in the macroparticle model the differential equation involves a singularly perturbed parabolic diffusion problem.
Their formulation considered a single period only and treated travel times as static.
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The formulation considers the non-linear behaviour of materials and shear connection.
Mixed formulation considers displacements, rotations and transverse shear forces as the unknown field variables.
The formulation considers two laminar streams that flow toward a stagnation plane.
The present formulation considers doubly curved thick shells and includes large deformations with Green Lagrange strains.
Synthetic interferograms generation through Okada formulation, considering a set of fault parameters spanning the variations of the phenomena behavior.
This formulation considers the physical design problem in a dynamic environment, where query patterns change over time.
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