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These phenomena can be well described through a macroscale modeling approach based on fundamental conservation equations.
Firstly, the bone scaffold modeling approach based on the shape function in the finite element method is provided.
For this, we introduce the notion of DSRMs and a generic reflexion modeling approach based on DSRMs.
In this paper, a micromechanics modeling approach based on the unit cell development has been developed paying particular attention to the role and the behavior of the constituents.
In order to compensate for nonlinear hysteresis in the piezoelectric actuators, an adaptive controller using direct inverse modeling approach based on a modified Prandtl Ishlinskii model is presented.
A novel modeling approach based on FEFF8 calculations is developed to study the relationships between the atomic structure, electronic property, and oxygen reduction reaction (ORR) activity of Pt3M nanoparticles (NPs) in combination with experimental results.
In this technique note, we compare these two solutions through a finite element modeling approach based on comparable boundary conditions, i.e., the similar areal extent, burial depth and fluid injection volume.
In order to tackle this issue, we used a dual model oriented modeling approach based on artificial neural networks (ANN) due to their advantages, being the generalization capability the most outstanding one.
The in-vivo material properties of the MVAL were simulated using an inverse FE modeling approach based on three pseudo-hyperelastic constitutive models: the neo-Hookean, exponential-type isotropic, and full collagen fiber mapped transversely isotropic models.
The present study addresses this challenge by integrating a physical (P) model (SAHYSMOD) with a group (stakeholder) built system dynamics model (GBSDM) through a component modeling approach based on widely applied tools such as MS Excel, Python and Visual Basic for Applications (VBA).
A series of direct shear tests are performed at different temperatures with a self-manufactured direct shear test setup, and then a heterogeneous fracture modeling approach based on the random aggregate generation and packing algorithm and the bilinear cohesive crack model is utilized to simulate shear fracture processes.
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