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Three-dimensional representative volume element (RVE) models with non-overlapping identical randomly distributed spherical voids are generated to simulate the mechanical responses of the porous neo-Hookean materials.
To reflect the uncertainty, random numbers are generated to simulate the possible failed bolts among a total of 60 bolts, which are circumferentially arranged along the inner side of the wall.
Finite element models including moisture clog zone are generated to simulate fire tests with consideration of moisture clog effect.
For the user profile, four features (again shown in Table 1) are generated to simulate a given user's interests and behavior location, activity, membership duration, and leadership.
Data are generated to simulate Cox regression model, according to [ 13].
Specializations are simulated equivalently, but for low values of T P. Different motif lengths are generated to simulate the extension operation.
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The randomly parameterized 2-D fiber distribution was generated to simulate a very realistic material structure.
Second, a clump consisting of spheres is generated to simulate the real particle using a minimum distance criterion.
A virtual cutting module equipped with an error-mapping model is generated to simulate the cutting process in vicinity of different error motion scenarios.
A computation code was generated to simulate numerically the development of the boundary layer, using a low turbulence Reynolds number form of the κ-ε turbulence closure model.
Numerical models were generated to simulate the pullout tests for the experimental works mentioned in the paper.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com